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Conserved domains on  [gi|2103672162|pdb|7DL3|C]
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Chain C, 3,5-diaminohexanoate dehydrogenase

Protein Classification

MDR/zinc-dependent alcohol dehydrogenase-like family protein( domain architecture ID 94789)

medium chain reductase/dehydrogenase (MDR)/zinc-dependent alcohol dehydrogenase-like family protein may catalyze the reversible NAD(P)(H)-dependent conversion of an alcohol to its corresponding aldehyde

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
Tdh super family cl43321
Threonine dehydrogenase or related Zn-dependent dehydrogenase [Amino acid transport and ...
162-341 5.85e-14

Threonine dehydrogenase or related Zn-dependent dehydrogenase [Amino acid transport and metabolism, General function prediction only]; Threonine dehydrogenase or related Zn-dependent dehydrogenase is part of the Pathway/BioSystem: Non-phosphorylated Entner-Doudoroff pathway


The actual alignment was detected with superfamily member COG1063:

Pssm-ID: 440683 [Multi-domain]  Cd Length: 341  Bit Score: 72.09  E-value: 5.85e-14
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDENLAlSVLDVAGAPAQ-VERL-VKPDDTVVIIGAnGKSGILCNAVAKeRAGiCGKVIGVVRNENYIPTCKATG 239
Cdd:COG1063 131 KVPDGLSDEAA-ALVEPLAVALHaVERAgVKPGDTVLVIGA-GPIGLLAALAAR-LAG-AARVIVVDRNPERLELARELG 206
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      240 CDEVILAQATDAItiqKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFSMATSFTKAALGaEGIGADVDMM 319
Cdd:COG1063 207 ADAVVNPREEDLV---EAVRELTGGRGADVVIEAVGAPAALEQALDLVRPGGTVVLVGVPGGPVPIDLN-ALVRKELTLR 282
                       170       180
                ....*....|....*....|..
7DL3_C      320 IGNGYAHHHSEIALDLLRRNSV 341
Cdd:COG1063 283 GSRNYTREDFPEALELLASGRI 304
 
Name Accession Description Interval E-value
Tdh COG1063
Threonine dehydrogenase or related Zn-dependent dehydrogenase [Amino acid transport and ...
162-341 5.85e-14

Threonine dehydrogenase or related Zn-dependent dehydrogenase [Amino acid transport and metabolism, General function prediction only]; Threonine dehydrogenase or related Zn-dependent dehydrogenase is part of the Pathway/BioSystem: Non-phosphorylated Entner-Doudoroff pathway


Pssm-ID: 440683 [Multi-domain]  Cd Length: 341  Bit Score: 72.09  E-value: 5.85e-14
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDENLAlSVLDVAGAPAQ-VERL-VKPDDTVVIIGAnGKSGILCNAVAKeRAGiCGKVIGVVRNENYIPTCKATG 239
Cdd:COG1063 131 KVPDGLSDEAA-ALVEPLAVALHaVERAgVKPGDTVLVIGA-GPIGLLAALAAR-LAG-AARVIVVDRNPERLELARELG 206
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      240 CDEVILAQATDAItiqKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFSMATSFTKAALGaEGIGADVDMM 319
Cdd:COG1063 207 ADAVVNPREEDLV---EAVRELTGGRGADVVIEAVGAPAALEQALDLVRPGGTVVLVGVPGGPVPIDLN-ALVRKELTLR 282
                       170       180
                ....*....|....*....|..
7DL3_C      320 IGNGYAHHHSEIALDLLRRNSV 341
Cdd:COG1063 283 GSRNYTREDFPEALELLASGRI 304
MDR cd05188
Medium chain reductase/dehydrogenase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
97-336 8.27e-14

Medium chain reductase/dehydrogenase (MDR)/zinc-dependent alcohol dehydrogenase-like family; The medium chain reductase/dehydrogenases (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH) , quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines. Other MDR members have only a catalytic zinc, and some contain no coordinated zinc.


Pssm-ID: 176178 [Multi-domain]  Cd Length: 271  Bit Score: 70.81  E-value: 8.27e-14
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C       97 FIGRVAAIGDKfemKEEVKVGDKIASLVSLSLTPLKINKVKKVLLDKDQMEIEG---QAILFSSGVYAKLPDDLDENLAL 173
Cdd:cd05188  37 GAGVVVEVGPG---VTGVKVGDRVVVLPNLGCGTCELCRELCPGGGILGEGLDGgfaEYVVVPADNLVPLPDGLSLEEAA 113
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      174 SVLDVAGAPAQ-VER--LVKPDDTVVIIGANGkSGILCNAVAKeRAGicGKVIGVVRNENYIPTCKATGCDEVILAQATD 250
Cdd:cd05188 114 LLPEPLATAYHaLRRagVLKPGDTVLVLGAGG-VGLLAAQLAK-AAG--ARVIVTDRSDEKLELAKELGADHVIDYKEED 189
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      251 aitiQKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFSMATSFTKAALGAEGIGADVDMMIGNGYAHHHSE 330
Cdd:cd05188 190 ----LEEELRLTGGGGADVVIDAVGGPETLAQALRLLRPGGRIVVVGGTSGGPPLDDLRRLLFKELTIIGSTGGTREDFE 265

                ....*.
7DL3_C      331 IALDLL 336
Cdd:cd05188 266 EALDLL 271
ADH_zinc_N pfam00107
Zinc-binding dehydrogenase;
205-293 6.31e-08

Zinc-binding dehydrogenase;


Pssm-ID: 395057 [Multi-domain]  Cd Length: 129  Bit Score: 50.68  E-value: 6.31e-08
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C        205 GILCNAVAKeRAGIcgKVIGVVRNENYIPTCKATGCDEVILAQATDaitIQKEVSRLTNGKMADVVINVVNTEDTELPSI 284
Cdd:pfam00107   3 GLAAIQLAK-AAGA--KVIAVDGSEEKLELAKELGADHVINPKETD---LVEEIKELTGGKGVDVVFDCVGSPATLEQAL 76

                  ....*....
7DL3_C        285 MAAKDRGMV 293
Cdd:pfam00107  77 KLLRPGGRV 85
 
Name Accession Description Interval E-value
Tdh COG1063
Threonine dehydrogenase or related Zn-dependent dehydrogenase [Amino acid transport and ...
162-341 5.85e-14

Threonine dehydrogenase or related Zn-dependent dehydrogenase [Amino acid transport and metabolism, General function prediction only]; Threonine dehydrogenase or related Zn-dependent dehydrogenase is part of the Pathway/BioSystem: Non-phosphorylated Entner-Doudoroff pathway


Pssm-ID: 440683 [Multi-domain]  Cd Length: 341  Bit Score: 72.09  E-value: 5.85e-14
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDENLAlSVLDVAGAPAQ-VERL-VKPDDTVVIIGAnGKSGILCNAVAKeRAGiCGKVIGVVRNENYIPTCKATG 239
Cdd:COG1063 131 KVPDGLSDEAA-ALVEPLAVALHaVERAgVKPGDTVLVIGA-GPIGLLAALAAR-LAG-AARVIVVDRNPERLELARELG 206
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      240 CDEVILAQATDAItiqKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFSMATSFTKAALGaEGIGADVDMM 319
Cdd:COG1063 207 ADAVVNPREEDLV---EAVRELTGGRGADVVIEAVGAPAALEQALDLVRPGGTVVLVGVPGGPVPIDLN-ALVRKELTLR 282
                       170       180
                ....*....|....*....|..
7DL3_C      320 IGNGYAHHHSEIALDLLRRNSV 341
Cdd:COG1063 283 GSRNYTREDFPEALELLASGRI 304
MDR cd05188
Medium chain reductase/dehydrogenase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
97-336 8.27e-14

Medium chain reductase/dehydrogenase (MDR)/zinc-dependent alcohol dehydrogenase-like family; The medium chain reductase/dehydrogenases (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH) , quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines. Other MDR members have only a catalytic zinc, and some contain no coordinated zinc.


Pssm-ID: 176178 [Multi-domain]  Cd Length: 271  Bit Score: 70.81  E-value: 8.27e-14
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C       97 FIGRVAAIGDKfemKEEVKVGDKIASLVSLSLTPLKINKVKKVLLDKDQMEIEG---QAILFSSGVYAKLPDDLDENLAL 173
Cdd:cd05188  37 GAGVVVEVGPG---VTGVKVGDRVVVLPNLGCGTCELCRELCPGGGILGEGLDGgfaEYVVVPADNLVPLPDGLSLEEAA 113
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      174 SVLDVAGAPAQ-VER--LVKPDDTVVIIGANGkSGILCNAVAKeRAGicGKVIGVVRNENYIPTCKATGCDEVILAQATD 250
Cdd:cd05188 114 LLPEPLATAYHaLRRagVLKPGDTVLVLGAGG-VGLLAAQLAK-AAG--ARVIVTDRSDEKLELAKELGADHVIDYKEED 189
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      251 aitiQKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFSMATSFTKAALGAEGIGADVDMMIGNGYAHHHSE 330
Cdd:cd05188 190 ----LEEELRLTGGGGADVVIDAVGGPETLAQALRLLRPGGRIVVVGGTSGGPPLDDLRRLLFKELTIIGSTGGTREDFE 265

                ....*.
7DL3_C      331 IALDLL 336
Cdd:cd05188 266 EALDLL 271
QOR2 cd05286
Quinone oxidoreductase (QOR); Quinone oxidoreductase (QOR) and 2-haloacrylate reductase. QOR ...
99-299 4.44e-11

Quinone oxidoreductase (QOR); Quinone oxidoreductase (QOR) and 2-haloacrylate reductase. QOR catalyzes the conversion of a quinone + NAD(P)H to a hydroquinone + NAD(P)+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR actin the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. 2-haloacrylate reductase, a member of this subgroup, catalyzes the NADPH-dependent reduction of a carbon-carbon double bond in organohalogen compounds. Although similar to QOR, Burkholderia 2-haloacrylate reductase does not act on the quinones 1,4-benzoquinone and 1,4-naphthoquinone. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176189 [Multi-domain]  Cd Length: 320  Bit Score: 63.23  E-value: 4.44e-11
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C       99 GRVAAIGDKFEmkeEVKVGDKIASLVSL----SLTPLKINKVkkvlldkdqmeiegqailfssgvyAKLPDDLDENLALS 174
Cdd:cd05286  64 GVVEAVGPGVT---GFKVGDRVAYAGPPgayaEYRVVPASRL------------------------VKLPDGISDETAAA 116
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      175 VLdVAGAPAQ--VER--LVKPDDTVVIIGANGKSG-ILCnAVAKERaGicGKVIGVVRNENYIPTCKATGCDEVILAQAT 249
Cdd:cd05286 117 LL-LQGLTAHylLREtyPVKPGDTVLVHAAAGGVGlLLT-QWAKAL-G--ATVIGTVSSEEKAELARAAGADHVINYRDE 191
                       170       180       190       200       210
                ....*....|....*....|....*....|....*....|....*....|
7DL3_C      250 DaitIQKEVSRLTNGKMADVVINVVNtEDTELPSIMAAKDRGMVYFFSMA 299
Cdd:cd05286 192 D---FVERVREITGGRGVDVVYDGVG-KDTFEGSLDSLRPRGTLVSFGNA 237
Qor COG0604
NADPH:quinone reductase or related Zn-dependent oxidoreductase [Energy production and ...
161-300 5.98e-11

NADPH:quinone reductase or related Zn-dependent oxidoreductase [Energy production and conversion, General function prediction only];


Pssm-ID: 440369 [Multi-domain]  Cd Length: 322  Bit Score: 62.86  E-value: 5.98e-11
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      161 AKLPDDLDENLALSVLdVAGAPAQ---VERL-VKPDDTVVIIGANGKSGILCNAVAKeRAGIcgKVIGVVRNENYIPTCK 236
Cdd:COG0604 106 VPLPDGLSFEEAAALP-LAGLTAWqalFDRGrLKPGETVLVHGAAGGVGSAAVQLAK-ALGA--RVIATASSPEKAELLR 181
                        90       100       110       120       130       140
                ....*....|....*....|....*....|....*....|....*....|....*....|....
7DL3_C      237 ATGCDEVILAQATDaitIQKEVSRLTNGKMADVVINVVNTEDTElPSIMAAKDRGMVYFFSMAT 300
Cdd:COG0604 182 ALGADHVIDYREED---FAERVRALTGGRGVDVVLDTVGGDTLA-RSLRALAPGGRLVSIGAAS 241
iditol_2_DH_like cd08235
L-iditol 2-dehydrogenase; Putative L-iditol 2-dehydrogenase based on annotation of some ...
158-297 3.38e-10

L-iditol 2-dehydrogenase; Putative L-iditol 2-dehydrogenase based on annotation of some members in this subgroup. L-iditol 2-dehydrogenase catalyzes the NAD+-dependent conversion of L-iditol to L-sorbose in fructose and mannose metabolism. This enzyme is related to sorbitol dehydrogenase, alcohol dehydrogenase, and other medium chain dehydrogenase/reductases. The zinc-dependent alcohol dehydrogenase (ADH-Zn)-like family of proteins is a diverse group of proteins related to the first identified member, class I mammalian ADH. This group is also called the medium chain dehydrogenases/reductase family (MDR) to highlight its broad range of activities and to distinguish from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal GroES-like catalytic domain. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176197 [Multi-domain]  Cd Length: 343  Bit Score: 60.69  E-value: 3.38e-10
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      158 GVYaKLPDDLDENLALSVLDVAGAPAQVERL-VKPDDTVVIIGAnGKSGILCNAVAKERAgiCGKVIGVVRNENYIPTCK 236
Cdd:cd08235 132 GVL-KLPDNVSFEEAALVEPLACCINAQRKAgIKPGDTVLVIGA-GPIGLLHAMLAKASG--ARKVIVSDLNEFRLEFAK 207
                        90       100       110       120       130       140
                ....*....|....*....|....*....|....*....|....*....|....*....|.
7DL3_C      237 ATGCDEVILAQATDAItiqKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFS 297
Cdd:cd08235 208 KLGADYTIDAAEEDLV---EKVRELTDGRGADVVIVATGSPEAQAQALELVRKGGRILFFG 265
sugar_DH cd08236
NAD(P)-dependent sugar dehydrogenases; This group contains proteins identified as sorbitol ...
162-296 2.80e-09

NAD(P)-dependent sugar dehydrogenases; This group contains proteins identified as sorbitol dehydrogenases and other sugar dehydrogenases of the medium-chain dehydrogenase/reductase family (MDR), which includes zinc-dependent alcohol dehydrogenase and related proteins. Sorbitol and aldose reductase are NAD(+) binding proteins of the polyol pathway, which interconverts glucose and fructose. Sorbitol dehydrogenase is tetrameric and has a single catalytic zinc per subunit. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Related proteins include threonine dehydrogenase, formaldehyde dehydrogenase, and butanediol dehydrogenase. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit. Horse liver alcohol dehydrogenase is a dimeric enzyme and each subunit has two domains. The NAD binding domain is in a Rossmann fold and the catalytic domain contains a zinc ion to which substrates bind. There is a cleft between the domains that closes upon formation of the ternary complex.


Pssm-ID: 176198 [Multi-domain]  Cd Length: 343  Bit Score: 57.62  E-value: 2.80e-09
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLD-------ENLALSVLDVAGAPaqverlVKPDDTVVIIGAnGKSGILCNAVAKeRAGiCGKVIGVVRNENYIPT 234
Cdd:cd08236 129 KIPDHVDyeeaamiEPAAVALHAVRLAG------ITLGDTVVVIGA-GTIGLLAIQWLK-ILG-AKRVIAVDIDDEKLAV 199
                        90       100       110       120       130       140
                ....*....|....*....|....*....|....*....|....*....|....*....|..
7DL3_C      235 CKATGCDEVILAQATDAITIQKevsrLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFF 296
Cdd:cd08236 200 ARELGADDTINPKEEDVEKVRE----LTEGRGADLVIEAAGSPATIEQALALARPGGKVVLV 257
Zn_ADH9 cd08269
Alcohol dehydrogenases of the MDR family; The medium chain dehydrogenases/reductase (MDR) ...
89-297 7.15e-09

Alcohol dehydrogenases of the MDR family; The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability.


Pssm-ID: 176230 [Multi-domain]  Cd Length: 312  Bit Score: 56.21  E-value: 7.15e-09
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C       89 EDTGSGGMFIGRVAAIGDKFEmkeEVKVGDKIASLVSLSLTPLkinkvkkVLLDKDQMeiegqailfssgvyAKLPDDLD 168
Cdd:cd08269  51 EPGGPGHEGWGRVVALGPGVR---GLAVGDRVAGLSGGAFAEY-------DLADADHA--------------VPLPSLLD 106
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      169 EnLALSVLDVAGAPAQVERL-VKPDDTVVIIGAnGKSGILCNAVAKeRAGIcGKVIGVVRNENYIPTCKATGCDEVILAQ 247
Cdd:cd08269 107 G-QAFPGEPLGCALNVFRRGwIRAGKTVAVIGA-GFIGLLFLQLAA-AAGA-RRVIAIDRRPARLALARELGATEVVTDD 182
                       170       180       190       200       210
                ....*....|....*....|....*....|....*....|....*....|
7DL3_C      248 ATDAItiqKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFS 297
Cdd:cd08269 183 SEAIV---ERVRELTGGAGADVVIEAVGHQWPLDLAGELVAERGRLVIFG 229
ETR_like cd05282
2-enoyl thioester reductase-like; 2-enoyl thioester reductase (ETR) catalyzes the ...
186-274 2.24e-08

2-enoyl thioester reductase-like; 2-enoyl thioester reductase (ETR) catalyzes the NADPH-dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. Candida tropicalis enoyl thioester reductase (Etr1p) catalyzes the NADPH-dependent reduction of trans-2-enoyl thioesters in mitochondrial fatty acid synthesis. Etr1p forms homodimers with each subunit containing a nucleotide-binding Rossmann fold domain and a catalytic domain.


Pssm-ID: 176645 [Multi-domain]  Cd Length: 323  Bit Score: 54.98  E-value: 2.24e-08
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      186 ERLVKPDDTVVIIGANGKSGILCNAVAKERaGIcgKVIGVVRNENYIPTCKATGCDEVILAQATDaitIQKEVSRLTNGK 265
Cdd:cd05282 133 YLKLPPGDWVIQNAANSAVGRMLIQLAKLL-GF--KTINVVRRDEQVEELKALGADEVIDSSPED---LAQRVKEATGGA 206

                ....*....
7DL3_C      266 MADVVINVV 274
Cdd:cd05282 207 GARLALDAV 215
ADH_zinc_N pfam00107
Zinc-binding dehydrogenase;
205-293 6.31e-08

Zinc-binding dehydrogenase;


Pssm-ID: 395057 [Multi-domain]  Cd Length: 129  Bit Score: 50.68  E-value: 6.31e-08
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C        205 GILCNAVAKeRAGIcgKVIGVVRNENYIPTCKATGCDEVILAQATDaitIQKEVSRLTNGKMADVVINVVNTEDTELPSI 284
Cdd:pfam00107   3 GLAAIQLAK-AAGA--KVIAVDGSEEKLELAKELGADHVINPKETD---LVEEIKELTGGKGVDVVFDCVGSPATLEQAL 76

                  ....*....
7DL3_C        285 MAAKDRGMV 293
Cdd:pfam00107  77 KLLRPGGRV 85
FDH_like cd05278
Formaldehyde dehydrogenases; Formaldehyde dehydrogenase (FDH) is a member of the ...
161-350 1.77e-07

Formaldehyde dehydrogenases; Formaldehyde dehydrogenase (FDH) is a member of the zinc-dependent/medium chain alcohol dehydrogenase family. Formaldehyde dehydrogenase (aka ADH3) may be the ancestral form of alcohol dehydrogenase, which evolved to detoxify formaldehyde. This CD contains glutathione dependant FDH, glutathione independent FDH, and related alcohol dehydrogenases. FDH converts formaldehyde and NAD(P) to formate and NAD(P)H. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. Unlike typical FDH, Pseudomonas putida aldehyde-dismutating FDH (PFDH) is glutathione-independent. The medium chain alcohol dehydrogenase family (MDR) have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176181 [Multi-domain]  Cd Length: 347  Bit Score: 52.28  E-value: 1.77e-07
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      161 AKLPDDLDENLALSVLDVAGAPAQVERL--VKPDDTVVIIGAnGKSGILCNAVAKERAGicGKVIGVVRNENYIPTCKAT 238
Cdd:cd05278 135 AKIPDGLPDEDALMLSDILPTGFHGAELagIKPGSTVAVIGA-GPVGLCAVAGARLLGA--ARIIAVDSNPERLDLAKEA 211
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      239 GCDEVIlaqATDAITIQKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFSMATSFTKAALGAEGIGADVDM 318
Cdd:cd05278 212 GATDII---NPKNGDIVEQILELTGGRGVDCVIEAVGFEETFEQAVKVVRPGGTIANVGVYGKPDPLPLLGEWFGKNLTF 288
                       170       180       190
                ....*....|....*....|....*....|...
7DL3_C      319 MIGNGYAHHHSEIALDLLRRNSV-LMKIFKERY 350
Cdd:cd05278 289 KTGLVPVRARMPELLDLIEEGKIdPSKLITHRF 321
Zn_ADH7 cd08261
Alcohol dehydrogenases of the MDR family; This group contains members identified as related to ...
162-287 3.94e-07

Alcohol dehydrogenases of the MDR family; This group contains members identified as related to zinc-dependent alcohol dehydrogenase and other members of the MDR family. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group includes various activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176222 [Multi-domain]  Cd Length: 337  Bit Score: 51.04  E-value: 3.94e-07
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDENLA-----LSVldvaGAPAqVERL-VKPDDTVVIIGAnGKSGILCNAVAKERAGicgKVIGVVRNENYIPTC 235
Cdd:cd08261 129 LVPEGLSLDQAalvepLAI----GAHA-VRRAgVTAGDTVLVVGA-GPIGLGVIQVAKARGA---RVIVVDIDDERLEFA 199
                        90       100       110       120       130
                ....*....|....*....|....*....|....*....|....*....|..
7DL3_C      236 KATGCDEVILAQATDAITiqkEVSRLTNGKMADVVInvvntEDTELPSIMAA 287
Cdd:cd08261 200 RELGADDTINVGDEDVAA---RLRELTDGEGADVVI-----DATGNPASMEE 243
FDH_like_2 cd08284
Glutathione-dependent formaldehyde dehydrogenase related proteins, child 2; ...
150-337 7.21e-07

Glutathione-dependent formaldehyde dehydrogenase related proteins, child 2; Glutathione-dependent formaldehyde dehydrogenases (FDHs) are members of the zinc-dependent/medium chain alcohol dehydrogenase family. Formaldehyde dehydrogenase (FDH) is a member of the zinc-dependent/medium chain alcohol dehydrogenase family. FDH converts formaldehyde and NAD to formate and NADH. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. These tetrameric FDHs have a catalytic zinc that resides between the catalytic and NAD(H)binding domains and a structural zinc in a lobe of the catalytic domain. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176244 [Multi-domain]  Cd Length: 344  Bit Score: 50.33  E-value: 7.21e-07
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      150 GQA----ILFSSGVYAKLPDDLDENLALSVLDV-AGAPAQVER-LVKPDDTVVIIGAnGKSGILCNAVAKERAGicGKVI 223
Cdd:cd08284 120 AQAeyvrVPFADGTLLKLPDGLSDEAALLLGDIlPTGYFGAKRaQVRPGDTVAVIGC-GPVGLCAVLSAQVLGA--ARVF 196
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      224 GVVRNENYIPTCKATGCdEVILAQATDAItiqKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFSMATSFT 303
Cdd:cd08284 197 AVDPVPERLERAAALGA-EPINFEDAEPV---ERVREATEGRGADVVLEAVGGAAALDLAFDLVRPGGVISSVGVHTAEE 272
                       170       180       190
                ....*....|....*....|....*....|....
7DL3_C      304 KAALGAEGIGADVDMMIGNGYAHHHSEIALDLLR 337
Cdd:cd08284 273 FPFPGLDAYNKNLTLRFGRCPVRSLFPELLPLLE 306
MDR_TM0436_like cd08231
Hypothetical enzyme TM0436 resembles the zinc-dependent alcohol dehydrogenases (ADH); This ...
98-274 8.04e-07

Hypothetical enzyme TM0436 resembles the zinc-dependent alcohol dehydrogenases (ADH); This group contains the hypothetical TM0436 alcohol dehydrogenase from Thermotoga maritima, proteins annotated as 5-exo-alcohol dehydrogenase, and other members of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family. MDR, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability.


Pssm-ID: 176193 [Multi-domain]  Cd Length: 361  Bit Score: 50.34  E-value: 8.04e-07
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C       98 IGRVAAIGDKFE---MKEEVKVGDKIASLVSLS---------LTPLKINKVKKVlldkdqmeieGQAILFS----SGVYA 161
Cdd:cd08231  63 VGRVVALGGGVTtdvAGEPLKVGDRVTWSVGAPcgrcyrclvGDPTKCENRKKY----------GHEASCDdphlSGGYA 132
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 ------------KLPDDLDENL-ALSVLDVAGAPAQVERL--VKPDDTVVIIGAnGKSGILCNAVAKERAGicGKVIGVV 226
Cdd:cd08231 133 ehiylppgtaivRVPDNVPDEVaAPANCALATVLAALDRAgpVGAGDTVVVQGA-GPLGLYAVAAAKLAGA--RRVIVID 209
                       170       180       190       200
                ....*....|....*....|....*....|....*....|....*...
7DL3_C      227 RNENYIPTCKATGCDEVILAQATDAITIQKEVSRLTNGKMADVVINVV 274
Cdd:cd08231 210 GSPERLELAREFGADATIDIDELPDPQRRAIVRDITGGRGADVVIEAS 257
sorbitol_DH cd05285
Sorbitol dehydrogenase; Sorbitol and aldose reductase are NAD(+) binding proteins of the ...
162-271 9.80e-07

Sorbitol dehydrogenase; Sorbitol and aldose reductase are NAD(+) binding proteins of the polyol pathway, which interconverts glucose and fructose. Sorbitol dehydrogenase is tetrameric and has a single catalytic zinc per subunit. Aldose reductase catalyzes the NADP(H)-dependent conversion of glucose to sorbital, and SDH uses NAD(H) in the conversion of sorbitol to fructose. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. The medium chain alcohol dehydrogenase family (MDR) have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176188 [Multi-domain]  Cd Length: 343  Bit Score: 49.80  E-value: 9.80e-07
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDdldenlalSVLDVAGAPaqVERL-----------VKPDDTVVIIGAnGKSGILCNAVAKerAGICGKVIGVVRNEN 230
Cdd:cd05285 132 KLPD--------NVSLEEGAL--VEPLsvgvhacrragVRPGDTVLVFGA-GPIGLLTAAVAK--AFGATKVVVTDIDPS 198
                        90       100       110       120
                ....*....|....*....|....*....|....*....|.
7DL3_C      231 YIPTCKATGCDEVILAQATDAITIQKEVSRLTNGKMADVVI 271
Cdd:cd05285 199 RLEFAKELGATHTVNVRTEDTPESAEKIAELLGGKGPDVVI 239
Zn_ADH_like2 cd08264
Alcohol dehydrogenases of the MDR family; This group resembles the zinc-dependent alcohol ...
162-329 1.05e-06

Alcohol dehydrogenases of the MDR family; This group resembles the zinc-dependent alcohol dehydrogenases of the medium chain dehydrogenase family. However, this subgroup does not contain the characteristic catalytic zinc site. Also, it contains an atypical structural zinc-binding pattern: DxxCxxCxxxxxxxC. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176225 [Multi-domain]  Cd Length: 325  Bit Score: 49.66  E-value: 1.05e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDENLALSvLDVAGAP---AQVERLVKPDDTVVIIGANGKSGILCNAVAKERAGicgKVIGVVRnENYIptcKAT 238
Cdd:cd08264 131 KIPDSISDELAAS-LPVAALTayhALKTAGLGPGETVVVFGASGNTGIFAVQLAKMMGA---EVIAVSR-KDWL---KEF 202
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      239 GCDEVIlaqatDAITIQKEVSRLTngKMADVVINVVNTEDTELpSIMAAKDRGMVYFFSMATsftkaalgaegiGADVDM 318
Cdd:cd08264 203 GADEVV-----DYDEVEEKVKEIT--KMADVVINSLGSSFWDL-SLSVLGRGGRLVTFGTLT------------GGEVKL 262
                       170
                ....*....|.
7DL3_C      319 MIGNGYAHHHS 329
Cdd:cd08264 263 DLSDLYSKQIS 273
MDR2 cd08268
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
99-274 1.84e-06

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176229 [Multi-domain]  Cd Length: 328  Bit Score: 49.13  E-value: 1.84e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C       99 GRVAAIGDKFEmkeEVKVGDKIASLVSLSLtplkinkvkkvlldkDQMEIEGQAILFSSGVYAKLPDDLD-ENLAlsvld 177
Cdd:cd08268  67 GVVEAVGAGVT---GFAVGDRVSVIPAADL---------------GQYGTYAEYALVPAAAVVKLPDGLSfVEAA----- 123
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      178 VAGAPAQVE-------RLVKPDDTVVIIGANGKSGILCNAVAKeRAGicGKVIGVVRNENYIPTCKATGCDEVIlaqATD 250
Cdd:cd08268 124 ALWMQYLTAygalvelAGLRPGDSVLITAASSSVGLAAIQIAN-AAG--ATVIATTRTSEKRDALLALGAAHVI---VTD 197
                       170       180
                ....*....|....*....|....
7DL3_C      251 AITIQKEVSRLTNGKMADVVINVV 274
Cdd:cd08268 198 EEDLVAEVLRITGGKGVDVVFDPV 221
THR_DH_like cd08239
L-threonine dehydrogenase (TDH)-like; MDR/AHD-like proteins, including a protein annotated as ...
162-295 5.58e-06

L-threonine dehydrogenase (TDH)-like; MDR/AHD-like proteins, including a protein annotated as a threonine dehydrogenase. L-threonine dehydrogenase (TDH) catalyzes the zinc-dependent formation of 2-amino-3-ketobutyrate from L-threonine via NAD(H)-dependent oxidation. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Zinc-dependent ADHs are medium chain dehydrogenase/reductase type proteins (MDRs) and have a NAD(P)(H)-binding domain in a Rossmann fold of an beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. In addition to alcohol dehydrogenases, this group includes quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176201 [Multi-domain]  Cd Length: 339  Bit Score: 47.70  E-value: 5.58e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDENLALSVLDVAGAPAQ-VERL-VKPDDTVVIIGAnGKSGILCNAVAKERAGicGKVIGVVRNENYIPTCKATG 239
Cdd:cd08239 132 PLPDDLSFADGALLLCGIGTAYHaLRRVgVSGRDTVLVVGA-GPVGLGALMLARALGA--EDVIGVDPSPERLELAKALG 208
                        90       100       110       120       130
                ....*....|....*....|....*....|....*....|....*....|....*.
7DL3_C      240 CDEVILAQATDAITIQKevsrLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYF 295
Cdd:cd08239 209 ADFVINSGQDDVQEIRE----LTSGAGADVAIECSGNTAARRLALEAVRPWGRLVL 260
QOR1 cd08241
Quinone oxidoreductase (QOR); QOR catalyzes the conversion of a quinone + NAD(P)H to a ...
94-274 7.14e-06

Quinone oxidoreductase (QOR); QOR catalyzes the conversion of a quinone + NAD(P)H to a hydroquinone + NAD(P)+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR acts in the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176203 [Multi-domain]  Cd Length: 323  Bit Score: 47.11  E-value: 7.14e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C       94 GGMFIGRVAAIGDKFEmkeEVKVGDKIASLVSLsltplkinkvkkvlldkdqmeieG----QAILFSSGVYaKLPDDLDE 169
Cdd:cd08241  62 GSEVAGVVEAVGEGVT---GFKVGDRVVALTGQ-----------------------GgfaeEVVVPAAAVF-PLPDGLSF 114
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      170 NLALSVLdVAGAPAQ---VER-LVKPDDTVVIIGANGKSGILCNAVAKeraGICGKVIGVVRNENYIPTCKATGCDEVIL 245
Cdd:cd08241 115 EEAAALP-VTYGTAYhalVRRaRLQPGETVLVLGAAGGVGLAAVQLAK---ALGARVIAAASSEEKLALARALGADHVID 190
                       170       180
                ....*....|....*....|....*....
7DL3_C      246 AQATDaitIQKEVSRLTNGKMADVVINVV 274
Cdd:cd08241 191 YRDPD---LRERVKALTGGRGVDVVYDPV 216
Zn_ADH_class_III cd08279
Class III alcohol dehydrogenase; Glutathione-dependent formaldehyde dehydrogenases (FDHs, ...
189-279 1.44e-05

Class III alcohol dehydrogenase; Glutathione-dependent formaldehyde dehydrogenases (FDHs, Class III ADH) are members of the zinc-dependent/medium chain alcohol dehydrogenase family. FDH converts formaldehyde and NAD(P) to formate and NAD(P)H. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. Class III ADH are also known as glutathione-dependent formaldehyde dehydrogenase (FDH), which convert aldehydes to corresponding carboxylic acid and alcohol. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of an beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding.


Pssm-ID: 176240 [Multi-domain]  Cd Length: 363  Bit Score: 46.38  E-value: 1.44e-05
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      189 VKPDDTVVIIGAngkSGILCNAVAKER-AGiCGKVIGVVRNENYIPTCKATGCDEVILAQATDAItiqKEVSRLTNGKMA 267
Cdd:cd08279 180 VRPGDTVAVIGC---GGVGLNAIQGARiAG-ASRIIAVDPVPEKLELARRFGATHTVNASEDDAV---EAVRDLTDGRGA 252
                        90
                ....*....|..
7DL3_C      268 DVVINVVNTEDT 279
Cdd:cd08279 253 DYAFEAVGRAAT 264
NADP_ADH cd08285
NADP(H)-dependent alcohol dehydrogenases; This group is predominated by atypical alcohol ...
161-279 1.62e-05

NADP(H)-dependent alcohol dehydrogenases; This group is predominated by atypical alcohol dehydrogenases; they exist as tetramers and exhibit specificity for NADP(H) as a cofactor in the interconversion of alcohols and aldehydes, or ketones. Like other zinc-dependent alcohol dehydrogenases (ADH) of the medium chain alcohol dehydrogenase/reductase family (MDR), tetrameric ADHs have a catalytic zinc that resides between the catalytic and NAD(H)binding domains; however, they do not have and a structural zinc in a lobe of the catalytic domain. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176245 [Multi-domain]  Cd Length: 351  Bit Score: 46.08  E-value: 1.62e-05
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      161 AKLPDDLDENLALSVLDVA-----GApaqvERL-VKPDDTVVIIGAnGKSGILCNAVAKERAGicGKVIGVVRNENYIPT 234
Cdd:cd08285 134 APLPDGLTDEQAVMLPDMMstgfhGA----ELAnIKLGDTVAVFGI-GPVGLMAVAGARLRGA--GRIIAVGSRPNRVEL 206
                        90       100       110       120
                ....*....|....*....|....*....|....*....|....*
7DL3_C      235 CKATGCDEVILAQATDaitIQKEVSRLTNGKMADVVINVVNTEDT 279
Cdd:cd08285 207 AKEYGATDIVDYKNGD---VVEQILKLTGGKGVDAVIIAGGGQDT 248
FDH_like_ADH2 cd08286
formaldehyde dehydrogenase (FDH)-like; This group is related to formaldehyde dehydrogenase ...
162-279 2.15e-05

formaldehyde dehydrogenase (FDH)-like; This group is related to formaldehyde dehydrogenase (FDH), which is a member of the zinc-dependent/medium chain alcohol dehydrogenase family. This family uses NAD(H) as a cofactor in the interconversion of alcohols and aldehydes, or ketones. Another member is identified as a dihydroxyacetone reductase. Like the zinc-dependent alcohol dehydrogenases (ADH) of the medium chain alcohol dehydrogenase/reductase family (MDR), tetrameric FDHs have a catalytic zinc that resides between the catalytic and NAD(H)binding domains and a structural zinc in a lobe of the catalytic domain. Unlike ADH, where NAD(P)(H) acts as a cofactor, NADH in FDH is a tightly bound redox cofactor (similar to nicotinamide proteins). The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176246 [Multi-domain]  Cd Length: 345  Bit Score: 45.70  E-value: 2.15e-05
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDENLALSVLDVAGAPAQVERL---VKPDDTVVIIGAnGKSGILCNAVAKERAGicGKVIGVVRNENYIPTCKAT 238
Cdd:cd08286 134 KLPEGVDEEAAVMLSDILPTGYECGVLngkVKPGDTVAIVGA-GPVGLAALLTAQLYSP--SKIIMVDLDDNRLEVAKKL 210
                        90       100       110       120
                ....*....|....*....|....*....|....*....|.
7DL3_C      239 GCDEVILAQATDAItiqKEVSRLTNGKMADVVINVVNTEDT 279
Cdd:cd08286 211 GATHTVNSAKGDAI---EQVLELTDGRGVDVVIEAVGIPAT 248
Zn_ADH4 cd08258
Alcohol dehydrogenases of the MDR family; This group shares the zinc coordination sites of the ...
162-271 5.48e-05

Alcohol dehydrogenases of the MDR family; This group shares the zinc coordination sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of an beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176219 [Multi-domain]  Cd Length: 306  Bit Score: 44.61  E-value: 5.48e-05
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLD-ENLALS-VLDVAgAPAQVER-LVKPDDTVVIIGAnGKSGILCNAVAKeragICGK---VIGVVRNENYIPTC 235
Cdd:cd08258 133 ELPENLSlEAAALTePLAVA-VHAVAERsGIRPGDTVVVFGP-GPIGLLAAQVAK----LQGAtvvVVGTEKDEVRLDVA 206
                        90       100       110
                ....*....|....*....|....*....|....*.
7DL3_C      236 KATGCDevilAQATDAITIQKEVSRLTNGKMADVVI 271
Cdd:cd08258 207 KELGAD----AVNGGEEDLAELVNEITDGDGADVVI 238
Zn_ADH10 cd08263
Alcohol dehydrogenases of the MDR family; NAD(P)(H)-dependent oxidoreductases are the major ...
161-305 1.50e-04

Alcohol dehydrogenases of the MDR family; NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176224 [Multi-domain]  Cd Length: 367  Bit Score: 43.13  E-value: 1.50e-04
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      161 AKLPDDLDENlALSVLDVAGAPA----QVERLVKPDDTVVIIGANGkSGILCNAVAKERAGicGKVIGVVRNENYIPTCK 236
Cdd:cd08263 154 APLPESLDYT-ESAVLGCAGFTAygalKHAADVRPGETVAVIGVGG-VGSSAIQLAKAFGA--SPIIAVDVRDEKLAKAK 229
                        90       100       110       120       130       140
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....
7DL3_C      237 ATGCDEVILAQATDAItiqKEVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYFFSMATSFTKA 305
Cdd:cd08263 230 ELGATHTVNAAKEDAV---AAIREITGGRGVDVVVEALGKPETFKLALDVVRDGGRAVVVGLAPGGATA 295
Zn_ADH_like1 cd08266
Alcohol dehydrogenases of the MDR family; This group contains proteins related to the ...
189-271 1.70e-04

Alcohol dehydrogenases of the MDR family; This group contains proteins related to the zinc-dependent alcohol dehydrogenases. However, while the group has structural zinc site characteristic of these enzymes, it lacks the consensus site for a catalytic zinc. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176227 [Multi-domain]  Cd Length: 342  Bit Score: 43.01  E-value: 1.70e-04
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      189 VKPDDTVVIIGANGKSGILCNAVAKeRAGicGKVIGVVRNENYIPTCKATGCDEVILAQATDaitIQKEVSRLTNGKMAD 268
Cdd:cd08266 164 LRPGETVLVHGAGSGVGSAAIQIAK-LFG--ATVIATAGSEDKLERAKELGADYVIDYRKED---FVREVRELTGKRGVD 237

                ...
7DL3_C      269 VVI 271
Cdd:cd08266 238 VVV 240
ETR_like_2 cd08292
2-enoyl thioester reductase (ETR) like proteins, child 2; 2-enoyl thioester reductase (ETR) ...
163-286 2.16e-04

2-enoyl thioester reductase (ETR) like proteins, child 2; 2-enoyl thioester reductase (ETR) like proteins. ETR catalyzes the NADPH-dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the 2-enoyl thioester reductase (ETR) like proteins. ETR catalyzes the NADPH-dependent dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains, at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. Candida tropicalis enoyl thioester reductase (Etr1p) catalyzes the NADPH-dependent reduction of trans-2-enoyl thioesters in mitochondrial fatty acid synthesis. Etr1p forms homodimers, with each subunit containing a nucleotide-binding Rossmann fold domain and a catalytic domain.


Pssm-ID: 176252 [Multi-domain]  Cd Length: 324  Bit Score: 42.71  E-value: 2.16e-04
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      163 LPDDLDENL----------ALSVLDVAGapaqverlVKPDDTVVIIGANGKSGILCNAVAKERaGIcgKVIGVVRNENYI 232
Cdd:cd08292 109 LPDGISDEVaaqliamplsALMLLDFLG--------VKPGQWLIQNAAGGAVGKLVAMLAAAR-GI--NVINLVRRDAGV 177
                        90       100       110       120       130
                ....*....|....*....|....*....|....*....|....*....|....*
7DL3_C      233 PTCKATGCDEVIlaqATDAITIQKEVSRLTNGKMADVVINVVNTEDT-ELPSIMA 286
Cdd:cd08292 178 AELRALGIGPVV---STEQPGWQDKVREAAGGAPISVALDSVGGKLAgELLSLLG 229
arabinose_DH_like cd05284
D-arabinose dehydrogenase; This group contains arabinose dehydrogenase (AraDH) and related ...
160-280 3.45e-04

D-arabinose dehydrogenase; This group contains arabinose dehydrogenase (AraDH) and related alcohol dehydrogenases. AraDH is a member of the medium chain dehydrogenase/reductase family and catalyzes the NAD(P)-dependent oxidation of D-arabinose and other pentoses, the initial step in the metabolism of d-arabinose into 2-oxoglutarate. Like the alcohol dehydrogenases, AraDH binds a zinc in the catalytic cleft as well as a distal structural zinc. AraDH forms homotetramers as a dimer of dimers. AraDH replaces a conserved catalytic His with replace with Arg, compared to the canonical ADH site. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176187 [Multi-domain]  Cd Length: 340  Bit Score: 42.16  E-value: 3.45e-04
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      160 YAKLPDDLD-ENLAlsVLDVAG-----APAQVERLVKPDDTVVIIGANGKSGIlcnAVAKERAGICGKVIGVVRNENYIP 233
Cdd:cd05284 132 LVKLPRGLDpVEAA--PLADAGltayhAVKKALPYLDPGSTVVVIGVGGLGHI---AVQILRALTPATVIAVDRSEEALK 206
                        90       100       110       120
                ....*....|....*....|....*....|....*....|....*..
7DL3_C      234 TCKATGCDEVILAQATDAitiqKEVSRLTNGKMADVVINVVNTEDTE 280
Cdd:cd05284 207 LAERLGADHVLNASDDVV----EEVRELTGGRGADAVIDFVGSDETL 249
AdhP COG1064
D-arabinose 1-dehydrogenase, Zn-dependent alcohol dehydrogenase family [Carbohydrate transport ...
162-291 4.88e-04

D-arabinose 1-dehydrogenase, Zn-dependent alcohol dehydrogenase family [Carbohydrate transport and metabolism];


Pssm-ID: 440684 [Multi-domain]  Cd Length: 332  Bit Score: 41.64  E-value: 4.88e-04
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDenlalsvlDVAGAP----------AQVERLVKPDDTVVIIGAnGKSGILCNAVAKERAgicGKVIGVVRNENY 231
Cdd:COG1064 131 KLPDGLD--------PAEAAPllcagitayrALRRAGVGPGDRVAVIGA-GGLGHLAVQIAKALG---AEVIAVDRSPEK 198
                        90       100       110       120       130       140
                ....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      232 IPTCKATGCDEVILAQATDAitiqkeVSRLTNGKMADVVINVVNTEDTELPSIMAAKDRG 291
Cdd:COG1064 199 LELARELGADHVVNSSDEDP------VEAVRELTGADVVIDTVGAPATVNAALALLRRGG 252
6_hydroxyhexanoate_dh_like cd08240
6-hydroxyhexanoate dehydrogenase; 6-hydroxyhexanoate dehydrogenase, an enzyme of the ...
160-279 9.08e-04

6-hydroxyhexanoate dehydrogenase; 6-hydroxyhexanoate dehydrogenase, an enzyme of the zinc-dependent alcohol dehydrogenase-like family of medium chain dehydrogenases/reductases catalyzes the conversion of 6-hydroxyhexanoate and NAD(+) to 6-oxohexanoate + NADH and H+. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains, at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176202 [Multi-domain]  Cd Length: 350  Bit Score: 40.68  E-value: 9.08e-04
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      160 YAKLPDDLDEN----LALSVLDVAGApaqVERLV--KPDDTVVIIGANGkSGILCNAVAKERAGIcgKVIGVVRNENYIP 233
Cdd:cd08240 141 YLVDPGGLDPAlaatLACSGLTAYSA---VKKLMplVADEPVVIIGAGG-LGLMALALLKALGPA--NIIVVDIDEAKLE 214
                        90       100       110       120
                ....*....|....*....|....*....|....*....|....*.
7DL3_C      234 TCKATGCDEVILAQATDAItiqKEVSRLTNGKmADVVINVVNTEDT 279
Cdd:cd08240 215 AAKAAGADVVVNGSDPDAA---KRIIKAAGGG-VDAVIDFVNNSAT 256
FDH_like_ADH3 cd08287
formaldehyde dehydrogenase (FDH)-like; This group contains proteins identified as alcohol ...
162-295 1.63e-03

formaldehyde dehydrogenase (FDH)-like; This group contains proteins identified as alcohol dehydrogenases and glutathione-dependant formaldehyde dehydrogenases (FDH) of the zinc-dependent/medium chain alcohol dehydrogenase family. The MDR family uses NAD(H) as a cofactor in the interconversion of alcohols and aldehydes, or ketones. FDH converts formaldehyde and NAD to formate and NADH. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176247 [Multi-domain]  Cd Length: 345  Bit Score: 39.98  E-value: 1.63e-03
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      162 KLPDDLDENLA--LSVLDV--AGAPAQVERLVKPDDTVVIIGaNGKSGiLCNAVAKERAGiCGKVIGVVRNENYIPTCKA 237
Cdd:cd08287 135 GSPSDDEDLLPslLALSDVmgTGHHAAVSAGVRPGSTVVVVG-DGAVG-LCAVLAAKRLG-AERIIAMSRHEDRQALARE 211
                        90       100       110       120       130
                ....*....|....*....|....*....|....*....|....*....|....*...
7DL3_C      238 TGCDEVILAQATDAITIQKEvsrLTNGKMADVVINVVNTEDTELPSIMAAKDRGMVYF 295
Cdd:cd08287 212 FGATDIVAERGEEAVARVRE---LTGGVGADAVLECVGTQESMEQAIAIARPGGRVGY 266
quinone_oxidoreductase_like_1 cd08243
Quinone oxidoreductase (QOR); NAD(P)(H)-dependent oxidoreductases are the major enzymes in the ...
189-293 2.24e-03

Quinone oxidoreductase (QOR); NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. The medium chain alcohol dehydrogenase family (MDR) have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176205 [Multi-domain]  Cd Length: 320  Bit Score: 39.51  E-value: 2.24e-03
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      189 VKPDDTVVIIGANGKSGILCNAVAKERagiCGKVIGVVRNENYIPTCKATGCDEVILAQATDAITIQKEvsrltnGKMAD 268
Cdd:cd08243 140 LQPGDTLLIRGGTSSVGLAALKLAKAL---GATVTATTRSPERAALLKELGADEVVIDDGAIAEQLRAA------PGGFD 210
                        90       100
                ....*....|....*....|....*
7DL3_C      269 VVINVVNTeDTELPSIMAAKDRGMV 293
Cdd:cd08243 211 KVLELVGT-ATLKDSLRHLRPGGIV 234
zeta_crystallin cd08253
Zeta-crystallin with NADP-dependent quinone reductase activity (QOR); Zeta-crystallin is a eye ...
150-294 3.14e-03

Zeta-crystallin with NADP-dependent quinone reductase activity (QOR); Zeta-crystallin is a eye lens protein with NADP-dependent quinone reductase activity (QOR). It has been cited as a structural component in mammalian eyes, but also has homology to quinone reductases in unrelated species. QOR catalyzes the conversion of a quinone and NAD(P)H to a hydroquinone and NAD(P+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR acts in the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176215 [Multi-domain]  Cd Length: 325  Bit Score: 39.10  E-value: 3.14e-03
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      150 GQAILFSSGVYA-----------KLPDDLD-ENLA----------LSVLDVAGApaqverlvKPDDTVVIIGANGKSGIL 207
Cdd:cd08253  89 NLGWGRRQGTAAeyvvvpadqlvPLPDGVSfEQGAalgipaltayRALFHRAGA--------KAGETVLVHGGSGAVGHA 160
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
7DL3_C      208 CNAVAKeRAGIcgKVIGVVRNENYIPTCKATGCDEVILAQATDAItiqKEVSRLTNGKMADVVINVVNTEDTEL-PSIMA 286
Cdd:cd08253 161 AVQLAR-WAGA--RVIATASSAEGAELVRQAGADAVFNYRAEDLA---DRILAATAGQGVDVIIEVLANVNLAKdLDVLA 234

                ....*...
7DL3_C      287 AKDRGMVY 294
Cdd:cd08253 235 PGGRIVVY 242
 
Blast search parameters
Data Source: Precalculated data, version = cdd.v.3.21
Preset Options:Database: CDSEARCH/cdd   Low complexity filter: no  Composition Based Adjustment: yes   E-value threshold: 0.01

References:

  • Wang J et al. (2023), "The conserved domain database in 2023", Nucleic Acids Res.51(D)384-8.
  • Lu S et al. (2020), "The conserved domain database in 2020", Nucleic Acids Res.48(D)265-8.
  • Marchler-Bauer A et al. (2017), "CDD/SPARCLE: functional classification of proteins via subfamily domain architectures.", Nucleic Acids Res.45(D)200-3.
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