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Conserved domains on  [gi|446839874|ref|WP_000917130|]
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MULTISPECIES: ADP-ribose diphosphatase [Enterobacteriaceae]

Protein Classification

ADP-ribose diphosphatase( domain architecture ID 11484913)

ADP-ribose diphosphatase catalyzes a hydrolysis reaction in which water nucleophilically attacks ADP-ribose to produce AMP and D-ribose 5-phosphate

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
nudF PRK10729
ADP-ribose pyrophosphatase NudF; Provisional
9-209 1.46e-157

ADP-ribose pyrophosphatase NudF; Provisional


:

Pssm-ID: 182682 [Multi-domain]  Cd Length: 202  Bit Score: 433.39  E-value: 1.46e-157
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   9 VTLGKNDVEIIARETLYRGFFSLDLYRFRHRLFNGQMSHEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSET 88
Cdd:PRK10729   1 VTFTKNDVEIIARETLYRGFFSLDLYRFRHRLFNGEMSGEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSET 80
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  89 PWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRV 168
Cdd:PRK10729  81 PWLLEMVAGMIEEGESVEDVARREAIEEAGLIVGRTKPVLSYLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRV 160
                        170       180       190       200
                 ....*....|....*....|....*....|....*....|.
gi 446839874 169 HVVSREQAYQWVEEGKIDNAASVIALQWLQLHHQALKNEWA 209
Cdd:PRK10729 161 HVVSREQAYQWVEEGKIDNAASVIALQWLQLHHQALKNEWA 201
 
Name Accession Description Interval E-value
nudF PRK10729
ADP-ribose pyrophosphatase NudF; Provisional
9-209 1.46e-157

ADP-ribose pyrophosphatase NudF; Provisional


Pssm-ID: 182682 [Multi-domain]  Cd Length: 202  Bit Score: 433.39  E-value: 1.46e-157
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   9 VTLGKNDVEIIARETLYRGFFSLDLYRFRHRLFNGQMSHEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSET 88
Cdd:PRK10729   1 VTFTKNDVEIIARETLYRGFFSLDLYRFRHRLFNGEMSGEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSET 80
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  89 PWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRV 168
Cdd:PRK10729  81 PWLLEMVAGMIEEGESVEDVARREAIEEAGLIVGRTKPVLSYLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRV 160
                        170       180       190       200
                 ....*....|....*....|....*....|....*....|.
gi 446839874 169 HVVSREQAYQWVEEGKIDNAASVIALQWLQLHHQALKNEWA 209
Cdd:PRK10729 161 HVVSREQAYQWVEEGKIDNAASVIALQWLQLHHQALKNEWA 201
NUDIX_ADPRase cd24155
Adp Ribose Pyrophosphatase; ADP-ribose pyrophosphatase (ADPRase) catalyzes the hydrolysis of ...
15-201 1.80e-107

Adp Ribose Pyrophosphatase; ADP-ribose pyrophosphatase (ADPRase) catalyzes the hydrolysis of ADP-ribose and a variety of additional ADP-sugar conjugates to AMP and ribose-5-phosphate. In humans, there are four distinct ADPRase activities, three putative cytosolic enzymes (ADPRase-I, -II, and -Mn) and a single mitochondrial enzyme (ADPRase-m). Human ADPRase-II is also referred to as NUDT5. It lacks the N-terminal target sequence unique to mitochondrial ADPRase. The different cytosolic types are distinguished by their specificities for substrate and specific requirement for metal ions. NUDT5 forms a homodimer. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity. UDP-glucose pyrophosphatase (UGPPase) (EC 3.6.1.45; also known as nucleoside diphosphate-linked moiety X)) motif 14; Nudt14) hydrolyzes the pyrophosphate of the nucleoside diphosphate sugar to generate glucose-1-P and UMP. In mammals, UDP-glucose is the glucosyl donor for the synthesis of the storage polysaccharide glycogen. UGPPase, as a regulator of UDP-glucose, could play a regulatory role, but it has been shown to prefer ADP-ribose over UDP-glucose. Like other members of the NUDIX hydrolase superfamily, it requires a divalent cation, such as Mg2+, for its activity. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site.


Pssm-ID: 467603 [Multi-domain]  Cd Length: 187  Bit Score: 306.37  E-value: 1.80e-107
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  15 DVEIIARETLYRGFFSLDLYRFRHRLFNGQMSHEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSETPWLLEM 94
Cdd:cd24155    1 DVEILSKETVYDGFFRLERYRLRHRRFDGGWSAPLTREIFERGDAVAVLPYDPVRDEVVLIEQFRIGALARDESPWLLEI 80
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  95 VAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRVHVVSRE 174
Cdd:cd24155   81 VAGMIDAGETPEDVARREAEEEAGLTLDALEPIASYYPSPGGSTERVHLYLGLVDLSDLGGIHGLAEEGEDIRVHVVPFD 160
                        170       180
                 ....*....|....*....|....*..
gi 446839874 175 QAYQWVEEGKIDNAASVIALQWLQLHH 201
Cdd:cd24155  161 EAMALLDDGEIDNAPLIIALQWLALNR 187
TIGR00052 TIGR00052
nudix-type nucleoside diphosphatase, YffH/AdpP family; Members of this family include proteins ...
14-199 8.00e-100

nudix-type nucleoside diphosphatase, YffH/AdpP family; Members of this family include proteins of about 200 amino acids, including the recently characterized nudix hydrolase YffH, shows to be highly active as a GDP-mannose pyrophosphatase. It also includes the C-terminal half of a 361-amino acid protein, TrgB from Rhodobacter sphaeroides, shown experimentally to help confer tellurite resistance. This model also hits a region near the C-terminus of a 1092-amino acid protein of C. elegans. [Unknown function, Enzymes of unknown specificity]


Pssm-ID: 129162 [Multi-domain]  Cd Length: 185  Bit Score: 287.10  E-value: 8.00e-100
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   14 NDVEIIARETLYRGFFSLDLYRFRHRLFNGQMSHEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSETPWLLE 93
Cdd:TIGR00052   1 NQQEIIIKDTLYSGFFSLLHNIFYHRLFKGGESIRVTREIYDRGNAAAVLLYDPKKDTVVLIEQFRIAAYVNGEEPWLLE 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   94 MVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRVHVVSR 173
Cdd:TIGR00052  81 LSAGMVEKGESPEDVARREAIEEAGYQVKNLRKLLSFYMSPGGVTELIHLFIAEVDDNQAAGIGGGADEEEIEVLHLVFS 160
                         170       180
                  ....*....|....*....|....*.
gi 446839874  174 eQAYQWVEEGKIDNAASVIALQWLQL 199
Cdd:TIGR00052 161 -QALQWIKEGKIDNGKTVILLQWLQL 185
MutT COG0494
8-oxo-dGTP pyrophosphatase MutT and related house-cleaning NTP pyrophosphohydrolases, NUDIX ...
45-198 1.51e-26

8-oxo-dGTP pyrophosphatase MutT and related house-cleaning NTP pyrophosphohydrolases, NUDIX family [Defense mechanisms];


Pssm-ID: 440260 [Multi-domain]  Cd Length: 143  Bit Score: 98.95  E-value: 1.51e-26
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  45 MSHEVRREIFERGHAAVLLPFDPvRDEVVLIEQIRIAAYdtsetPWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRT 124
Cdd:COG0494    1 MTEILSSEPEHYRPAVVVVLLDD-DGRVLLVRRYRYGVG-----PGLWEFPGGKIEPGESPEEAALRELREETGLTAEDL 74
                         90       100       110       120       130       140       150
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....
gi 446839874 125 KPVLSFLaSPGGTSERSSIMVGEVdaTTASGIHGLADENEDIRVHVVSREQAYQWVEEGKIdnAASVIALQWLQ 198
Cdd:COG0494   75 ELLGELP-SPGYTDEKVHVFLARG--LGPGEEVGLDDEDEFIEVRWVPLDEALALVTAGEI--AKTLAALARLL 143
NUDIX pfam00293
NUDIX domain;
58-167 3.73e-07

NUDIX domain;


Pssm-ID: 395229 [Multi-domain]  Cd Length: 132  Bit Score: 47.48  E-value: 3.73e-07
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   58 HAAVLLPFDPVRDEVVLIEQIRIAAydtsetPWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTK---PVLSFLASP 134
Cdd:pfam00293   3 RVAVGVVLLNEKGRVLLVRRSKKPF------PGWWSLPGGKVEPGETPEEAARRELEEETGLEPELLEllgSLHYLAPFD 76
                          90       100       110
                  ....*....|....*....|....*....|...
gi 446839874  135 GGTSERSSIMVGEVDATTASGIHGLADENEDIR 167
Cdd:pfam00293  77 GRFPDEHEILYVFLAEVEGELEPDPDGEVEEVR 109
 
Name Accession Description Interval E-value
nudF PRK10729
ADP-ribose pyrophosphatase NudF; Provisional
9-209 1.46e-157

ADP-ribose pyrophosphatase NudF; Provisional


Pssm-ID: 182682 [Multi-domain]  Cd Length: 202  Bit Score: 433.39  E-value: 1.46e-157
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   9 VTLGKNDVEIIARETLYRGFFSLDLYRFRHRLFNGQMSHEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSET 88
Cdd:PRK10729   1 VTFTKNDVEIIARETLYRGFFSLDLYRFRHRLFNGEMSGEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSET 80
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  89 PWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRV 168
Cdd:PRK10729  81 PWLLEMVAGMIEEGESVEDVARREAIEEAGLIVGRTKPVLSYLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRV 160
                        170       180       190       200
                 ....*....|....*....|....*....|....*....|.
gi 446839874 169 HVVSREQAYQWVEEGKIDNAASVIALQWLQLHHQALKNEWA 209
Cdd:PRK10729 161 HVVSREQAYQWVEEGKIDNAASVIALQWLQLHHQALKNEWA 201
NUDIX_ADPRase cd24155
Adp Ribose Pyrophosphatase; ADP-ribose pyrophosphatase (ADPRase) catalyzes the hydrolysis of ...
15-201 1.80e-107

Adp Ribose Pyrophosphatase; ADP-ribose pyrophosphatase (ADPRase) catalyzes the hydrolysis of ADP-ribose and a variety of additional ADP-sugar conjugates to AMP and ribose-5-phosphate. In humans, there are four distinct ADPRase activities, three putative cytosolic enzymes (ADPRase-I, -II, and -Mn) and a single mitochondrial enzyme (ADPRase-m). Human ADPRase-II is also referred to as NUDT5. It lacks the N-terminal target sequence unique to mitochondrial ADPRase. The different cytosolic types are distinguished by their specificities for substrate and specific requirement for metal ions. NUDT5 forms a homodimer. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity. UDP-glucose pyrophosphatase (UGPPase) (EC 3.6.1.45; also known as nucleoside diphosphate-linked moiety X)) motif 14; Nudt14) hydrolyzes the pyrophosphate of the nucleoside diphosphate sugar to generate glucose-1-P and UMP. In mammals, UDP-glucose is the glucosyl donor for the synthesis of the storage polysaccharide glycogen. UGPPase, as a regulator of UDP-glucose, could play a regulatory role, but it has been shown to prefer ADP-ribose over UDP-glucose. Like other members of the NUDIX hydrolase superfamily, it requires a divalent cation, such as Mg2+, for its activity. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site.


Pssm-ID: 467603 [Multi-domain]  Cd Length: 187  Bit Score: 306.37  E-value: 1.80e-107
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  15 DVEIIARETLYRGFFSLDLYRFRHRLFNGQMSHEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSETPWLLEM 94
Cdd:cd24155    1 DVEILSKETVYDGFFRLERYRLRHRRFDGGWSAPLTREIFERGDAVAVLPYDPVRDEVVLIEQFRIGALARDESPWLLEI 80
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  95 VAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRVHVVSRE 174
Cdd:cd24155   81 VAGMIDAGETPEDVARREAEEEAGLTLDALEPIASYYPSPGGSTERVHLYLGLVDLSDLGGIHGLAEEGEDIRVHVVPFD 160
                        170       180
                 ....*....|....*....|....*..
gi 446839874 175 QAYQWVEEGKIDNAASVIALQWLQLHH 201
Cdd:cd24155  161 EAMALLDDGEIDNAPLIIALQWLALNR 187
TIGR00052 TIGR00052
nudix-type nucleoside diphosphatase, YffH/AdpP family; Members of this family include proteins ...
14-199 8.00e-100

nudix-type nucleoside diphosphatase, YffH/AdpP family; Members of this family include proteins of about 200 amino acids, including the recently characterized nudix hydrolase YffH, shows to be highly active as a GDP-mannose pyrophosphatase. It also includes the C-terminal half of a 361-amino acid protein, TrgB from Rhodobacter sphaeroides, shown experimentally to help confer tellurite resistance. This model also hits a region near the C-terminus of a 1092-amino acid protein of C. elegans. [Unknown function, Enzymes of unknown specificity]


Pssm-ID: 129162 [Multi-domain]  Cd Length: 185  Bit Score: 287.10  E-value: 8.00e-100
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   14 NDVEIIARETLYRGFFSLDLYRFRHRLFNGQMSHEVRREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSETPWLLE 93
Cdd:TIGR00052   1 NQQEIIIKDTLYSGFFSLLHNIFYHRLFKGGESIRVTREIYDRGNAAAVLLYDPKKDTVVLIEQFRIAAYVNGEEPWLLE 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   94 MVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGEVDATTASGIHGLADENEDIRVHVVSR 173
Cdd:TIGR00052  81 LSAGMVEKGESPEDVARREAIEEAGYQVKNLRKLLSFYMSPGGVTELIHLFIAEVDDNQAAGIGGGADEEEIEVLHLVFS 160
                         170       180
                  ....*....|....*....|....*.
gi 446839874  174 eQAYQWVEEGKIDNAASVIALQWLQL 199
Cdd:TIGR00052 161 -QALQWIKEGKIDNGKTVILLQWLQL 185
NUDIX_GDPMK cd24157
GDP-mannose hydrolase (GDPMK), and similar proteins; GDP-mannose hydrolase (GDPMK) is a NUDIX ...
54-199 7.59e-41

GDP-mannose hydrolase (GDPMK), and similar proteins; GDP-mannose hydrolase (GDPMK) is a NUDIX enzyme that uses GDP-mannose as the preferred substrate. It is distinct from Nudix ADP-ribose hydrolases. GDPMK and ADP-ribose pyrophosphatase seem to use similar catalytic mechanism. However, GDPMK hydrolysis does not rely on a single glutamate as the catalytic base; rather, it is dependent on residues that coordinate the magnesium ions and residues that position the substrate properly for catalysis. Members of the NUDIX hydrolase superfamily catalyze the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+, for their activity and contain a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which functions as a metal binding and catalytic site. Substrates of NUDIX hydrolases include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance _ "house-cleaning" enzymes. Substrate specificity is used to define families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required.


Pssm-ID: 467605  Cd Length: 146  Bit Score: 135.77  E-value: 7.59e-41
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  54 FERGHAAVLLPFDPVRDEVVLIEQIRIAAYDTSETPWLLEMVAGMIeEGESVEDVARREAIEEAGLIVKRTKPVLSFLAS 133
Cdd:cd24157    1 YDRGDAAAVLLYDPKRKTVVLVRQFRAPAYLGGGDGWLIEACAGLL-DGDDPEDCIRREAEEETGYRLGDLEKVFTAYSS 79
                         90       100       110       120       130       140
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 446839874 134 PGGTSERSSIMVGEVDAT--TASGiHGLADENEDIRVHVVSREQAYQWVEEGKIDNAASVIALQWLQL 199
Cdd:cd24157   80 PGIVTERIHLFIAEYSSAdrVGAG-GGLAEEGEDIEVLELPLDEALAMIETGEIRDAKTIILLQYLRL 146
NUDIX_ADPRase_Nudt5_UGPPase_Nudt14 cd03424
ADP-ribose pyrophosphatase, UDP-glucose pyrophosphatase, and similar proteins; ADP-ribose ...
56-198 2.28e-32

ADP-ribose pyrophosphatase, UDP-glucose pyrophosphatase, and similar proteins; ADP-ribose pyrophosphatase (ADPRase) ( NUDIX (Nucleoside diphosphate-linked moiety X)) motif 5; Nudt5) catalyzes the hydrolysis of ADP-ribose and a variety of additional ADP-sugar conjugates to AMP and ribose-5-phosphate. In humans, there are four distinct ADPRase activities, three putative cytosolic enzymes (ADPRase-I, -II, and -Mn) and a single mitochondrial enzyme (ADPRase-m). Human ADPRase-II is also referred to as NUDT5. It lacks the N-terminal target sequence unique to mitochondrial ADPRase. The different cytosolic types are distinguished by their specificities for substrate and specific requirement for metal ions. NUDT5 forms a homodimer. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity. UDP-glucose pyrophosphatase (UGPPase) (EC 3.6.1.45; also known as nucleoside diphosphate-linked moiety X)) motif 14; Nudt14) hydrolyzes the pyrophosphate of the nucleoside diphosphate sugar to generate glucose-1-P and UMP. In mammals, UDP-glucose is the glucosyl donor for the synthesis of the storage polysaccharide glycogen. UGPPase, as a regulator of UDP-glucose, could play a regulatory role, but it has been shown to prefer ADP-ribose over UDP-glucose. Like other members of the NUDIX hydrolase superfamily, it requires a divalent cation, such as Mg2+, for its activity. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site.


Pssm-ID: 467530 [Multi-domain]  Cd Length: 134  Bit Score: 113.76  E-value: 2.28e-32
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  56 RGHAAVLLPFDPvRDEVVLIEQIRIAAYDtsetpWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPG 135
Cdd:cd03424    1 HPGAVAVLAITD-DGKVVLVRQYRHPVGR-----VLLELPAGKIDPGEDPEEAARRELEEETGYTAGDLELLGSFYPSPG 74
                         90       100       110       120       130       140
                 ....*....|....*....|....*....|....*....|....*....|....*....|...
gi 446839874 136 GTSERSSIMVGEVDATTAsgiHGLADENEDIRVHVVSREQAYQWVEEGKIDNAASVIALQWLQ 198
Cdd:cd03424   75 FSDERIHLFLAEDLTPVS---EQALDEDEFIEVVLVPLEEALEMIEDGEITDAKTLAALLLAL 134
MutT COG0494
8-oxo-dGTP pyrophosphatase MutT and related house-cleaning NTP pyrophosphohydrolases, NUDIX ...
45-198 1.51e-26

8-oxo-dGTP pyrophosphatase MutT and related house-cleaning NTP pyrophosphohydrolases, NUDIX family [Defense mechanisms];


Pssm-ID: 440260 [Multi-domain]  Cd Length: 143  Bit Score: 98.95  E-value: 1.51e-26
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  45 MSHEVRREIFERGHAAVLLPFDPvRDEVVLIEQIRIAAYdtsetPWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRT 124
Cdd:COG0494    1 MTEILSSEPEHYRPAVVVVLLDD-DGRVLLVRRYRYGVG-----PGLWEFPGGKIEPGESPEEAALRELREETGLTAEDL 74
                         90       100       110       120       130       140       150
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....
gi 446839874 125 KPVLSFLaSPGGTSERSSIMVGEVdaTTASGIHGLADENEDIRVHVVSREQAYQWVEEGKIdnAASVIALQWLQ 198
Cdd:COG0494   75 ELLGELP-SPGYTDEKVHVFLARG--LGPGEEVGLDDEDEFIEVRWVPLDEALALVTAGEI--AKTLAALARLL 143
NUDIX_ADPRase_Ndx2 cd24161
NUDIX family Ndx2; NUDIX family protein Ndx2 found in Thermus thermophilus has ADP-ribose ...
55-200 3.28e-23

NUDIX family Ndx2; NUDIX family protein Ndx2 found in Thermus thermophilus has ADP-ribose pyrophosphatase (ADPRase) as well as flavin adenine dinucleotide (FAD) activity. ADPRase (EC 3.6.1.13) catalyzes the hydrolysis of ADP-ribose to AMP and ribose-5-P. Like other members of the NUDIX hydrolase superfamily of enzymes, it is thought to require a divalent cation, such as Mg2+, for its activity. It also contains a 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity.Members of the NUDIX hydrolase superfamily catalyze the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+, for their activity and contain a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which functions as a metal binding and catalytic site. Substrates of NUDIX hydrolases include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance _ "house-cleaning" enzymes. Substrate specificity is used to define families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required.


Pssm-ID: 467609 [Multi-domain]  Cd Length: 137  Bit Score: 90.31  E-value: 3.28e-23
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  55 ERGHAAVLLPFDPvRDEVVLIEQIRIAAYDtsetpWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASP 134
Cdd:cd24161    1 EKNDAVGVLPITD-DGEVVLVEQYRYPLGG-----WSWEIPAGGWPEGEDPEEAARRELREETGLRAERWTPLGRFYPSN 74
                         90       100       110       120       130       140
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*.
gi 446839874 135 GGTSERSSIMVGEvDATtaSGIHGLADENEDIRVHVVSREQAYQWVEEGKIDNAASVIALQWLQLH 200
Cdd:cd24161   75 GVSDERAHVFLAT-GLT--PGEPAPEETEEDLEVRRVPLAEALAMVLDGEITDAMSVAALLLARLH 137
PRK15009 PRK15009
GDP-mannose pyrophosphatase NudK; Provisional
50-201 1.04e-19

GDP-mannose pyrophosphatase NudK; Provisional


Pssm-ID: 184971  Cd Length: 191  Bit Score: 82.58  E-value: 1.04e-19
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  50 RREIFERGHAAVLLPFDPVRDEVVLIEQIRIAAY-DTSETPWLLEMVAGMIEEGESvEDVARREAIEEAGLIVKRTKPVL 128
Cdd:PRK15009  38 KREVYDRGNGATILLYNAKKKTVVLIRQFRVATWvNGNESGQLIETCAGLLDNDEP-EVCIRKEAIEETGYEVGEVRKLF 116
                         90       100       110       120       130       140       150
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....
gi 446839874 129 SFLASPGGTSERSSIMVGEV-DATTASGIHGLadENEDIRVHVVSREQAYQWVEEGKIDNAASVIALQWLQLHH 201
Cdd:PRK15009 117 ELYMSPGGVTELIHFFIAEYsDSQRANAGGGV--EDEDIEVLELPFSQALEMIKTGEIRDGKTVLLLNYLQTSH 188
NUDIX_ADPRase_Rv1700 cd24158
ADP-ribose pyrophosphatase from Mycobacterium tuberculosis (Mt-ADPRase), and similar proteins; ...
17-194 1.07e-17

ADP-ribose pyrophosphatase from Mycobacterium tuberculosis (Mt-ADPRase), and similar proteins; Mycobacterium tuberculosis ADP-ribose pyrophosphatase mt-ADPRase(also called Rv1700) is a NUDIX protein that catalyzes the hydrolysis of ADP-ribose and a variety of additional ADP-sugar conjugates to AMP and ribose-5-phosphate. In humans, there are four distinct ADPRase activities, three putative cytosolic enzymes (ADPRase-I, -II, and -Mn) and a single mitochondrial enzyme (ADPRase-m). Human ADPRase-II is also referred to as NUDT5. It lacks the N-terminal target sequence unique to mitochondrial ADPRase. The different cytosolic types are distinguished by their specificities for substrate and specific requirement for metal ions. NUDT5 forms a homodimer. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity. UDP-glucose pyrophosphatase (UGPPase) (EC 3.6.1.45; also known as nucleoside diphosphate-linked moiety X)) motif 14; Nudt14) hydrolyzes the pyrophosphate of the nucleoside diphosphate sugar to generate glucose-1-P and UMP. In mammals, UDP-glucose is the glucosyl donor for the synthesis of the storage polysaccharide glycogen. UGPPase, as a regulator of UDP-glucose, could play a regulatory role, but it has been shown to prefer ADP-ribose over UDP-glucose. Like other members of the NUDIX hydrolase superfamily, it requires a divalent cation, such as Mg2+, for its activity. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site.


Pssm-ID: 467606 [Multi-domain]  Cd Length: 174  Bit Score: 76.88  E-value: 1.07e-17
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  17 EIIARETLYRGFFsLDLYRFRHRLFNGQmshEVRREIFERGHAAVLLPFDPvRDEVVLIEQIR--IAAYdtsetpwLLEM 94
Cdd:cd24158    1 PVLSSEVVYEGAI-WDVRRDTVDLPGGG---TVTREYVEHPGAVAVVALDD-DGRVLLIRQYRhpVRRR-------LWEL 68
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  95 VAGMIE-EGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGE-VDATTASGIHGLADENEDIRVHVVS 172
Cdd:cd24158   69 PAGLLDvAGEPPLEAAARELAEEADLEAARWEVLVDLFTSPGFSSEAVRVYLARgLSEVPEADRHEREDEEADMTLRWVP 148
                        170       180
                 ....*....|....*....|..
gi 446839874 173 REQAYQWVEEGKIDNAASVIAL 194
Cdd:cd24158  149 LDEAVAAVLAGRITNSTAVAGV 170
NUDIX_ADPRase_Nudt5 cd18888
ADP-ribose pyrophosphatase; ADP-ribose pyrophosphatase (ADPRase) (also known as NUDIX ...
70-182 7.96e-13

ADP-ribose pyrophosphatase; ADP-ribose pyrophosphatase (ADPRase) (also known as NUDIX (Nucleoside diphosphate-linked moiety X)) motif 5; Nudt5) catalyzes the hydrolysis of ADP-ribose and a variety of additional ADP-sugar conjugates to AMP and ribose-5-phosphate. In humans, there are four distinct ADPRase activities, three putative cytosolic enzymes (ADPRase-I, -II, and -Mn) and a single mitochondrial enzyme (ADPRase-m). Human ADPRase-II is also referred to as NUDT5. It lacks the N-terminal target sequence unique to mitochondrial ADPRase. The different cytosolic types are distinguished by their specificities for substrate and specific requirement for metal ions. NUDT5 forms a homodimer. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity.


Pssm-ID: 467598 [Multi-domain]  Cd Length: 149  Bit Score: 63.27  E-value: 7.96e-13
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  70 DEVVLIEQIR--IAAYdtsetpwLLEMVAGMIEEGESVEDVARREAIEEAGLI---VKRTKPVLSflASPGGTSERSSIM 144
Cdd:cd18888   18 PELVLVKQYRppVNAY-------TIEFPAGLVDPGESPEQAALRELKEETGYTgekVLSVSPPLA--LDPGLSNANMKLV 88
                         90       100       110       120
                 ....*....|....*....|....*....|....*....|
gi 446839874 145 VGEVDATTASGIHGLA--DENEDIRVHVVSREQAYQWVEE 182
Cdd:cd18888   89 TVEVDGDDPENQNPKQelEDGEFIEVILVPLNELLERLQE 128
NUDIX_ADPRase cd24160
Adp-ribose pyrophosphatase (ADPRase) found in Thermus thermophilus, and similar proteins; ...
36-193 1.34e-10

Adp-ribose pyrophosphatase (ADPRase) found in Thermus thermophilus, and similar proteins; ADP-ribose pyrophosphatase (ADPRase) such as found in extreme thermophile Thermus thermophilus (TtADPRase) catalyzes the hydrolysis of ADPR to AMP and ribose 5'-phosphate in the presence of Mg2+ and Zn2+ ions. In humans, there are four distinct ADPRase activities, three putative cytosolic enzymes (ADPRase-I, -II, and -Mn) and a single mitochondrial enzyme (ADPRase-m). Human ADPRase-II is also referred to as NUDT5. It lacks the N-terminal target sequence unique to mitochondrial ADPRase. The different cytosolic types are distinguished by their specificities for substrate and specific requirement for metal ions. NUDT5 forms a homodimer. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity. UDP-glucose pyrophosphatase (UGPPase) (EC 3.6.1.45; also known as nucleoside diphosphate-linked moiety X)) motif 14; Nudt14) hydrolyzes the pyrophosphate of the nucleoside diphosphate sugar to generate glucose-1-P and UMP. In mammals, UDP-glucose is the glucosyl donor for the synthesis of the storage polysaccharide glycogen. UGPPase, as a regulator of UDP-glucose, could play a regulatory role, but it has been shown to prefer ADP-ribose over UDP-glucose. Like other members of the NUDIX hydrolase superfamily, it requires a divalent cation, such as Mg2+, for its activity. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site.


Pssm-ID: 467608 [Multi-domain]  Cd Length: 151  Bit Score: 57.51  E-value: 1.34e-10
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  36 FRHRLFNgqMSHEVRREIFERGHAAVLLPFDpvRDEVVLIEQIRIAAydTSETpwlLEMVAGMIEEGESVEDVARREAIE 115
Cdd:cd24160    2 YRGRILN--LALEGRYEIVEHADAVAVLALR--EGRMLFVRQMRPAV--GAAT---LEIPAGLIDPGETPEEAARRELAE 72
                         90       100       110       120       130       140       150
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 446839874 116 EAGLIVKRTKpVLSFLASPGGTSERSSIMVgevdATTASGIHGLADENEDIRVHVVSREQAYQWVEEGKIDNAASVIA 193
Cdd:cd24160   73 ETGLSGDLTY-LTRFYVSPGFCDEKLHVFL----AENLREVEAHPDEDEAIEVVWMRPEEVLERLRRGEVEFSATTLV 145
NUDIX_UGPPase_Nudt14 cd18887
UDP-glucose pyrophosphatase; UDP-glucose pyrophosphatase (UGPPase) (EC 3.6.1.45; also known as ...
60-201 1.04e-09

UDP-glucose pyrophosphatase; UDP-glucose pyrophosphatase (UGPPase) (EC 3.6.1.45; also known as NUDIX (nucleoside diphosphate-linked moiety X)) motif 14; Nudt14) hydrolyzes the pyrophosphate of the nucleoside diphosphate sugar to generate glucose-1-P and UMP. In mammals, UDP-glucose is the glucosyl donor for the synthesis of the storage polysaccharide glycogen. UGPPase, as a regulator of UDP-glucose, could play a regulatory role, but it has been shown to prefer ADP-ribose over UDP-glucose. Like other members of the NUDIX hydrolase superfamily, it requires a divalent cation, such as Mg2+, for its activity. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site.


Pssm-ID: 467597 [Multi-domain]  Cd Length: 181  Bit Score: 55.64  E-value: 1.04e-09
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  60 AVLLpFDPVRDEVVLIEQIRIAAY-------------DTSETP----WLLEMVAGMIEEGESVEDVARREAIEEAGLIVK 122
Cdd:cd18887   20 AILL-YNKTRDAFVLVKQFRPAVYasqvraaernggkDTEKYPpelgYTYELCAGLVDKDKSLEEIAQEEILEECGYDVP 98
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874 123 RTK--PVLSFLASPGGTSERSSIMVGEVD---ATTASGihGLADENEDIRVHVVSREQAYQWVEEGKIDNAASVI-ALQW 196
Cdd:cd18887   99 LEDleKITSFRSGVGTSGSRQTLFYAEVTddmKVSEGG--GVEEEGEMIEVVELPVEEAKEFIFDEEIPKPPGLLfALLW 176

                 ....*
gi 446839874 197 LQLHH 201
Cdd:cd18887  177 FLQNK 181
NUDIX_ADPRase_NudF cd24159
Bdellovibrio Bacteriovorus nucleoside diphosphate sugar hydrolase, and similar proteins; ...
19-198 3.69e-09

Bdellovibrio Bacteriovorus nucleoside diphosphate sugar hydrolase, and similar proteins; Bdellovibrio bacteriovorus nucleoside diphosphate sugar (NDPS) hydrolase Bd3179 has been shown to similarities to the Escherichia coli adenosine diphosphate ribose (ADPR) hydrolase and the guanosine diphosphate mannose (GDPM) hydrolase. It may have a role when Bdellovibrio degrades and metabolizes host cell. ADP-ribose pyrophosphatase (ADPRase) catalyzes the hydrolysis of ADP-ribose and a variety of additional ADP-sugar conjugates to AMP and ribose-5-phosphate. In humans, there are four distinct ADPRase activities, three putative cytosolic enzymes (ADPRase-I, -II, and -Mn) and a single mitochondrial enzyme (ADPRase-m). Human ADPRase-II is also referred to as NUDT5. It lacks the N-terminal target sequence unique to mitochondrial ADPRase. The different cytosolic types are distinguished by their specificities for substrate and specific requirement for metal ions. NUDT5 forms a homodimer. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity. UDP-glucose pyrophosphatase (UGPPase) (EC 3.6.1.45; also known as nucleoside diphosphate-linked moiety X)) motif 14; Nudt14) hydrolyzes the pyrophosphate of the nucleoside diphosphate sugar to generate glucose-1-P and UMP. In mammals, UDP-glucose is the glucosyl donor for the synthesis of the storage polysaccharide glycogen. UGPPase, as a regulator of UDP-glucose, could play a regulatory role, but it has been shown to prefer ADP-ribose over UDP-glucose. Like other members of the NUDIX hydrolase superfamily, it requires a divalent cation, such as Mg2+, for its activity. It also contains a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site.


Pssm-ID: 467607 [Multi-domain]  Cd Length: 173  Bit Score: 53.92  E-value: 3.69e-09
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  19 IARETLYRGFFsLDLYRFRHRLFNGQMShevRREIFERGHAAVLLPFDPvRDEVVLIEQIRIAAYDTsetpwLLEMVAGM 98
Cdd:cd24159    7 LSSRVVYKGGF-LKVHRDQVRLPDGSTS---TREYITHPGAVAVVPLLD-DGRVVMERQYRYPLKRV-----FLEFPAGK 76
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  99 IEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSErssimvgEVDATTASGIHGLA---DENEDIRVHVVSREQ 175
Cdd:cd24159   77 IDPGEDTLETAKRELLEETGYEAQEWAFLTTIHPAIGYSNE-------HIEIYLARGLTHVEqklDDGEFLEVVEVSLAE 149
                        170       180
                 ....*....|....*....|...
gi 446839874 176 AYQWVEEGKIDNAASVIALQWLQ 198
Cdd:cd24159  150 LLEMVLSGEITDVKTIIGLFWLQ 172
NUDIX_Hydrolase cd02883
NUDIX hydrolase superfamily; NUDIX hydrolase is a superfamily of enzymes found in all three ...
58-167 1.87e-08

NUDIX hydrolase superfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467528 [Multi-domain]  Cd Length: 106  Bit Score: 50.48  E-value: 1.87e-08
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  58 HAAVLLPFDPvRDEVVLIEQIRIAAydtsetPWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGT 137
Cdd:cd02883    1 VAVGAVVFDD-EGRVLLVRRSDGPG------PGGWELPGGGVEPGETPEEAAVREVREETGLDVEVLRLLGVYEFPDPDE 73
                         90       100       110
                 ....*....|....*....|....*....|
gi 446839874 138 SERSSIMVGEVDATTASGIHGLADENEDIR 167
Cdd:cd02883   74 GRHVVVLVFLARVVGGEPPPLDDEEISEVR 103
NUDIX pfam00293
NUDIX domain;
58-167 3.73e-07

NUDIX domain;


Pssm-ID: 395229 [Multi-domain]  Cd Length: 132  Bit Score: 47.48  E-value: 3.73e-07
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   58 HAAVLLPFDPVRDEVVLIEQIRIAAydtsetPWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTK---PVLSFLASP 134
Cdd:pfam00293   3 RVAVGVVLLNEKGRVLLVRRSKKPF------PGWWSLPGGKVEPGETPEEAARRELEEETGLEPELLEllgSLHYLAPFD 76
                          90       100       110
                  ....*....|....*....|....*....|...
gi 446839874  135 GGTSERSSIMVGEVDATTASGIHGLADENEDIR 167
Cdd:pfam00293  77 GRFPDEHEILYVFLAEVEGELEPDPDGEVEEVR 109
PLN03143 PLN03143
nudix hydrolase; Provisional
35-194 1.80e-06

nudix hydrolase; Provisional


Pssm-ID: 215602  Cd Length: 291  Bit Score: 47.12  E-value: 1.80e-06
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  35 RFRHRLFNGQMSHEVRREIFERGHA-AVLLPFDPVRDE-VVLIEQIRIAAYDTsetpwLLEMVAGMI--EEGESVeDVAR 110
Cdd:PLN03143 106 KFKADIIDKETGQKVPGIVFARGPAvAVLILLESEGETyAVLTEQVRVPVGKF-----VLELPAGMLddDKGDFV-GTAV 179
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874 111 REAIEEAGLIVKRTKPV--LSFL---------ASPGGTSERSSIMV--GEVDATTASGIHG----LADENEDIRVHVVSR 173
Cdd:PLN03143 180 REVEEETGIKLKLEDMVdlTAFLdpstgcrmfPSPGGCDEEISLFLyrGHVDKETIRQLQGketgLRDHGELIKVHVVPY 259
                        170       180
                 ....*....|....*....|.
gi 446839874 174 EQAYQWVEEGKidnAASVIAL 194
Cdd:PLN03143 260 RELWRMTADAK---VLMAIAL 277
NUDIX_NADH_pyrophosphatase_Nudt13 cd03429
NADH pyrophosphatase; NADH pyrophosphatase, also known as NUDIX (nucleoside diphosphate linked ...
95-176 3.71e-06

NADH pyrophosphatase; NADH pyrophosphatase, also known as NUDIX (nucleoside diphosphate linked moiety X)) motif 13/Nudt13, is thought to have NADH pyrophosphatase activity, be involved in NADH metabolic process and NADP catabolic process, catalyzing the cleavage of NADH into reduced nicotinamide mononucleotide (NMNH) and AMP, and located in mitochondrion. Like other members of the NUDIX family, it requires a divalent cation, such as Mg2+ or Mn2+, for activity. Members of this family are also recognized by the NUDIX motif, a highly conserved 23-residue block (GX5EX7REUXEEXGU, where U = I, L or V), that functions as a metal binding and catalytic site. A block of 8 conserved amino acids downstream of the NUDIX motif is thought to give NADH pyrophosphatase its specificity for NADH. NADH pyrophosphatase forms a dimer.


Pssm-ID: 467535 [Multi-domain]  Cd Length: 126  Bit Score: 44.40  E-value: 3.71e-06
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  95 VAGMIEEGESVEDVARREAIEEAGLIVKRtkpvLSFLAS-PGGTSerSSIMVGEVdATTASGIHgLADENEDIRVHVVSR 173
Cdd:cd03429   31 LAGFVEPGETLEEAVRREVKEEVGLRVKN----VRYVGSqPWPFP--SSLMLGFT-AEADSGEI-TVDDDELEDARWFSR 102

                 ...
gi 446839874 174 EQA 176
Cdd:cd03429  103 DEL 105
NUDIX_ADPRase_NudE cd24156
NUDIX domain family NudE found in Escherichia coli, and similar proteins; The adenosine ...
57-194 9.30e-06

NUDIX domain family NudE found in Escherichia coli, and similar proteins; The adenosine nucleotide hydrolase NudE protein in Escherichia coli is a NUDIX hydrolase family member active against ADP ribose, NADH, AP2A and AP3A33, and is classified as a hydrolase (E.C. 3.6.1.-) based on gene annotations. It is an ADPRase (EC 3.6.1.13) catalyzes the hydrolysis of ADP-ribose to AMP and ribose-5-P. Like other members of the NUDIX hydrolase superfamily of enzymes, it is thought to require a divalent cation, such as Mg2+, for its activity. It also contains a 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V) which functions as a metal binding site/catalytic site. In addition to the NUDIX motif, there are additional conserved amino acid residues, distal from the signature sequence, that correlate with substrate specificity. Members of the NUDIX hydrolase superfamily catalyze the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+, for their activity and contain a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which functions as a metal binding and catalytic site. Substrates of NUDIX hydrolases include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance _ "house-cleaning" enzymes. Substrate specificity is used to define families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required.


Pssm-ID: 467604 [Multi-domain]  Cd Length: 134  Bit Score: 43.77  E-value: 9.30e-06
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  57 GHAAVL-LPFDPvRDEVVLIEQiriaaYDTSETPWLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPG 135
Cdd:cd24156    1 GRGAVMiVPILD-DDHLLLIRE-----YAAGTERYELGFPKGLIDPGETPEEAANRELKEEIGFGARQLTLLRELSLAPS 74
                         90       100       110       120       130
                 ....*....|....*....|....*....|....*....|....*....|....*....
gi 446839874 136 GTSERSSIMVGEvdATTASGIHGlaDENEDIRVHVVSREQAYQWVEEGKIDNAASVIAL 194
Cdd:cd24156   75 YMSHKMHIVLAR--DLYPERLEG--DEPEPLEVVRWPLADLDELLADPDFTEARSIAAL 129
NUDIX_Hydrolase cd04677
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
96-131 1.33e-05

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467560 [Multi-domain]  Cd Length: 137  Bit Score: 43.27  E-value: 1.33e-05
                         10        20        30
                 ....*....|....*....|....*....|....*.
gi 446839874  96 AGMIEEGESVEDVARREAIEEAGLIVKrtkpVLSFL 131
Cdd:cd04677   41 GGAMELGESLEETARREVFEETGLTVE----ELELL 72
nudE PRK11762
adenosine nucleotide hydrolase NudE; Provisional
1-147 2.26e-05

adenosine nucleotide hydrolase NudE; Provisional


Pssm-ID: 183303  Cd Length: 185  Bit Score: 43.25  E-value: 2.26e-05
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874   1 MLKPDNLPVTLgknDVEIIARETLYRgFFSLDLyRFRhrlfNGqmsheVRReIFER----GHAAVL-LPFDPvRDEVVLI 75
Cdd:PRK11762   1 MMKMRQKPEIL---NRETVAKSRLFR-VESVDL-EFS----NG-----VER-VYERmrpsGRGAVMiVPILD-DDTLLLI 64
                         90       100       110       120       130       140       150
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|..
gi 446839874  76 EQIrIAAYDTSEtpwlLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSFLASPGGTSERSSIMVGE 147
Cdd:PRK11762  65 REY-AAGTERYE----LGFPKGLIDPGETPLEAANRELKEEVGFGARQLTFLKELSLAPSYFSSKMNIVLAE 131
YjhB COG1051
ADP-ribose pyrophosphatase YjhB, NUDIX family [Nucleotide transport and metabolism];
56-130 7.74e-05

ADP-ribose pyrophosphatase YjhB, NUDIX family [Nucleotide transport and metabolism];


Pssm-ID: 440671 [Multi-domain]  Cd Length: 125  Bit Score: 40.73  E-value: 7.74e-05
                         10        20        30        40        50        60        70
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*
gi 446839874  56 RGHAAVLLPFDPvRDEVVLIEQIRIAAYDtsetpwLLEMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPVLSF 130
Cdd:COG1051    5 PKVAVDAVIFRK-DGRVLLVRRADEPGKG------LWALPGGKVEPGETPEEAALRELREETGLEVEVLELLGVF 72
NUDIX_Hydrolase cd04676
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
72-125 4.18e-04

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467559 [Multi-domain]  Cd Length: 144  Bit Score: 39.31  E-value: 4.18e-04
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*
gi 446839874  72 VVLIEQIRIAAYDTSETP-WLLEmvAGMIEEGESVEDVARREAIEEAGLIVKRTK 125
Cdd:cd04676   23 VILNEDGRILLQRKGGLGlWSLP--AGAIEPGEHPAEAVIREVREETGLLVKPTR 75
NUDIX_Hydrolase cd04663
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
92-123 4.53e-04

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467548 [Multi-domain]  Cd Length: 132  Bit Score: 38.81  E-value: 4.53e-04
                         10        20        30
                 ....*....|....*....|....*....|..
gi 446839874  92 LEMVAGMIEEGESVEDVARREAIEEAGLIVKR 123
Cdd:cd04663   28 LQVPKGTVEPGESPEEAALRELAEETGLTGAR 59
NUDIX_MTH1_Nudt1 cd03427
MutT homolog-1 (MTH1); MutT homolog-1 (MTH1; EC 3.6.1.- ), also called nucleoside ...
97-127 5.36e-04

MutT homolog-1 (MTH1); MutT homolog-1 (MTH1; EC 3.6.1.- ), also called nucleoside diphosphate-linked moiety X)) motif 1 (Nudt1), is a member of the NUDIX hydrolase superfamily. MTH1, the mammalian counterpart of MutT, hydrolyzes oxidized purine nucleoside triphosphates, such as 8-oxo-dGTP and 2-hydroxy-ATP, to monophosphates, thereby preventing the incorporation of such oxygen radicals during replication. This is an important step in the repair mechanism in genomic and mitochondrial DNA. Like other members of the NUDIX family, it requires a divalent cation, such as Mg2+ or Mn2+, for activity, and contain the NUDIX motif, a highly conserved 23-residue block (GX5EX7REUXEEXGU, where U = I, L or V), that functions as a metal binding and catalytic site. MTH1 is predominantly localized in the cytoplasm and mitochondria. Structurally, this enzyme adopts a similar fold to MutT despite low sequence similarity outside the conserved NUDIX motif. The most distinctive structural difference between MutT and MTH1 is the presence of a beta-hairpin, which is absent in MutT. This results in a much deeper and narrower substrate binding pocket. Mechanistically, MTH1 contains dual specificity for nucleotides that contain 2-OH-adenine bases and those that contain 8-oxo-guanine bases.


Pssm-ID: 467533 [Multi-domain]  Cd Length: 136  Bit Score: 38.66  E-value: 5.36e-04
                         10        20        30
                 ....*....|....*....|....*....|.
gi 446839874  97 GMIEEGESVEDVARREAIEEAGLIVKRTKPV 127
Cdd:cd03427   34 GKVEPGETIEEAAVRELEEEAGLTATELEKV 64
NPY1 COG2816
NADH pyrophosphatase NudC, Nudix superfamily [Nucleotide transport and metabolism];
95-146 6.34e-04

NADH pyrophosphatase NudC, Nudix superfamily [Nucleotide transport and metabolism];


Pssm-ID: 442065 [Multi-domain]  Cd Length: 288  Bit Score: 39.51  E-value: 6.34e-04
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*..
gi 446839874  95 VAGMIEEGESVEDVARREAIEEAGLIVKRtkpvLSFLAS-----PggtserSSIMVG 146
Cdd:COG2816  187 LAGFVEPGETLEQAVRREVFEEVGVRVKN----VRYVGSqpwpfP------SSLMLG 233
NUDIX_Hydrolase cd04683
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
68-122 1.10e-03

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467566 [Multi-domain]  Cd Length: 137  Bit Score: 37.97  E-value: 1.10e-03
                         10        20        30        40        50
                 ....*....|....*....|....*....|....*....|....*....|....*
gi 446839874  68 VRDEVVLIEQIRIAAYDTSetPWLLemVAGMIEEGESVEDVARREAIEEAGLIVK 122
Cdd:cd04683    8 VRGDEVLLLRRANTGYDDG--WWHL--PAGHVEAGETVRAAAVREAKEELGVEID 58
NUDIX_MutT_Nudt1 cd18886
MutT homolog-1 and similar proteins; MutT homolog-1 (MTH1), also known as NUDIX (nucleoside ...
95-122 3.73e-03

MutT homolog-1 and similar proteins; MutT homolog-1 (MTH1), also known as NUDIX (nucleoside diphosphate-linked moiety X)) motif 1/Nudt1, is a member of the NUDIX hydrolase superfamily. MTH1, the mammalian counterpart of MutT, hydrolyzes oxidized purine nucleoside triphosphates, such as 8-oxo-dGTP and 2-hydroxy-ATP, to monophosphates, thereby preventing the incorporation of such oxygen radicals during replication. This is an important step in the repair mechanism in genomic and mitochondrial DNA. Like other members of the NUDIX family, it requires a divalent cation, such as Mg2+ or Mn2+, for activity, and contain the NUDIX motif, a highly conserved 23-residue block (GX5EX7REUXEEXGU, where U = I, L or V), that functions as a metal binding and catalytic site. MTH1 is predominantly localized in the cytoplasm and mitochondria. Structurally, this enzyme adopts a similar fold to MutT despite low sequence similarity outside the conserved NUDIX motif. The most distinctive structural difference between MutT and MTH1 is the presence of a beta-hairpin, which is absent in MutT. This results in a much deeper and narrower substrate binding pocket. Mechanistically, MTH1 contains dual specificity for nucleotides that contain 2-OH-adenine bases and those that contain 8-oxo-guanine bases.


Pssm-ID: 467596 [Multi-domain]  Cd Length: 147  Bit Score: 36.44  E-value: 3.73e-03
                         10        20
                 ....*....|....*....|....*...
gi 446839874  95 VAGMIEEGESVEDVARREAIEEAGLIVK 122
Cdd:cd18886   30 VGGKLEPGESPEECAIREVFEETGLELE 57
NUDIX_Tnr3_like cd03676
thiamine diphosphokinase Tnr3 from Schizosaccharomyces pombe and similar proteins; Tnr3 is a ...
94-119 4.29e-03

thiamine diphosphokinase Tnr3 from Schizosaccharomyces pombe and similar proteins; Tnr3 is a bifunctional enzyme composed of a C-terminal thiamine pyrophosphokinase domain, which transfers pyrophosphate from ATP to thiamine and an N-terminal NUDIX hydrolase domain that converts oxidized derivatives of thiamine diphosphate (oxothiamine and oxythiamine) to their respective monophosphates. Members of the NUDIX hydrolase superfamily catalyze the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belong to this superfamily requires a divalent cation, such as Mg2+ or Mn2+, for their activity and contain a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which functions as a metal binding and catalytic site. Substrates of NUDIX hydrolases include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance _ "house-cleaning" enzymes. Substrate specificity is used to define families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required.


Pssm-ID: 467544  Cd Length: 153  Bit Score: 36.32  E-value: 4.29e-03
                         10        20
                 ....*....|....*....|....*.
gi 446839874  94 MVAGMIEEGESVEDVARREAIEEAGL 119
Cdd:cd03676   42 LVAGGVPAGESPLETLVREAEEEAGL 67
NUDIX_DIPP2_like_Nudt4 cd04666
diadenosine 5',5'''-P1,P6-hexaphosphate hydrolase type 2 and similar proteins; Diadenosine 5', ...
97-130 4.81e-03

diadenosine 5',5'''-P1,P6-hexaphosphate hydrolase type 2 and similar proteins; Diadenosine 5',5'''-P1,P6-hexaphosphate hydrolase type 2 (DIPP2), also known as NUDIX (nucleoside diphosphate-linked moiety X)) motif 4; Nudt4, and other proteins including DIPP1/Nudt3, DIPP3a;APS2/Nudt10 and DIPP3beta;APS1/Nudt11. DIPP regulates the turnover of diphosphoinositol polyphosphates. The turnover of these high-energy diphosphoinositol polyphosphates represents a molecular switching activity with important regulatory consequences. Molecular switching by diphosphoinositol polyphosphates may contribute to regulating intracellular trafficking. Several alternatively spliced transcript variants have been described, but the full-length nature of some variants has not been determined. Isoforms DIPP2alpha and DIPP2beta are distinguishable from each other solely by DIPP2beta possessing one additional amino acid due to intron boundary skidding in alternate splicing. Members of the NUDIX hydrolase superfamily catalyze the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+, for their activity and contain a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which functions as a metal binding and catalytic site. Substrates of NUDIX hydrolases include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance _ "house-cleaning" enzymes. Substrate specificity is used to define families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required.


Pssm-ID: 467551 [Multi-domain]  Cd Length: 128  Bit Score: 35.97  E-value: 4.81e-03
                         10        20        30
                 ....*....|....*....|....*....|....*
gi 446839874  97 GMIEEGESVEDVARREAIEEAGLIVK-RTKPVLSF 130
Cdd:cd04666   33 GGPEKGETPAEAAAREAWEEAGVRGKvLKRPLGVY 67
NUDIX_Hydrolase cd04692
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
50-134 4.81e-03

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467574 [Multi-domain]  Cd Length: 142  Bit Score: 36.00  E-value: 4.81e-03
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  50 RREIFERG--HAAV-LLPFDPVRDEVVLieQIRIA-------AYDTSetpwllemVAGMIEEGESVEDVARREAIEEAGL 119
Cdd:cd04692   16 RSEVHRQGlwHRTVhVWLVNPEEGRLLL--QKRSAnkddfpgLWDIS--------AAGHIDAGETYEEAAVRELEEELGL 85
                         90
                 ....*....|....*
gi 446839874 120 IVKRTKPVLSFLASP 134
Cdd:cd04692   86 TVSPEDLIFLGVIRE 100
NUDIX_RppH cd04665
RNA pyrophosphohydrolase; The initiation of mRNA degradation often requires deprotection of ...
93-127 5.07e-03

RNA pyrophosphohydrolase; The initiation of mRNA degradation often requires deprotection of its 5' end. In eukaryotes, the 5'-methylguanosine (cap) structure is principally removed by the NUDIX family decapping enzyme Dcp2, yielding a 5'-monophosphorylated RNA that is a substrate for 5' exoribonucleases. In bacteria, the 5'-triphosphate group of primary transcripts is also converted to a 5' monophosphate by a NUDIX protein called RNA pyrophosphohydrolase (RppH), allowing access to both endo- and 5' exoribonucleases. NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467550 [Multi-domain]  Cd Length: 121  Bit Score: 35.69  E-value: 5.07e-03
                         10        20        30
                 ....*....|....*....|....*....|....*
gi 446839874  93 EMVAGMIEEGESVEDVARREAIEEAGLIVKRTKPV 127
Cdd:cd04665   25 EFPGGKREPGETIEEAARRELYEETGAVIFELKPL 59
NUDIX_Hydrolase cd18875
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
97-128 5.13e-03

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467587 [Multi-domain]  Cd Length: 144  Bit Score: 36.01  E-value: 5.13e-03
                         10        20        30
                 ....*....|....*....|....*....|..
gi 446839874  97 GMIEEGESVEDVARREAIEEAGLIVKrtKPVL 128
Cdd:cd18875   34 GHVEPGESFVDSVIREVKEETGLTIK--NPEL 63
NUDIX_Hydrolase cd18876
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
59-176 7.89e-03

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467588 [Multi-domain]  Cd Length: 121  Bit Score: 35.26  E-value: 7.89e-03
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 446839874  59 AAVLLpFDPvRDEVVLIEQiriaaydTSETPWLLemVAGMIEEGESVEDVARREAIEEAGLivkrTKPVLSFLA---SPG 135
Cdd:cd18876    3 AGALF-TDA-AGRVLLVKP-------TYKDGWEL--PGGVVEAGESPLQAARREVREELGL----DVPVGRLLAvdwVPP 67
                         90       100       110       120
                 ....*....|....*....|....*....|....*....|....*
gi 446839874 136 GTSERSSIM----VGEVDATTASGIHGlaDENEDIRVHVVSREQA 176
Cdd:cd18876   68 AGGGDDAVLfvfdGGVLTPEQAAAIRL--QDEELSAYRFVTPEEA 110
NUDIX_Hydrolase cd04511
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
96-121 9.18e-03

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467545 [Multi-domain]  Cd Length: 123  Bit Score: 34.86  E-value: 9.18e-03
                         10        20
                 ....*....|....*....|....*.
gi 446839874  96 AGMIEEGESVEDVARREAIEEAGLIV 121
Cdd:cd04511   33 AGFMELGETTEQGAARETREEAGARV 58
NUDIX_Hydrolase cd04685
uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found ...
58-121 9.83e-03

uncharacterized NUDIX hydrolase subfamily; NUDIX hydrolase is a superfamily of enzymes found in all three kingdoms of life, and it catalyzes the hydrolysis of NUcleoside DIphosphates linked to other moieties, X. Enzymes belonging to this superfamily require a divalent cation, such as Mg2+ or Mn2+ for their activity. Members of this family are recognized by a highly conserved 23-residue NUDIX motif (GX5EX7REUXEEXGU, where U = I, L or V), which forms a structural motif that functions as a metal binding and catalytic site. Substrates of NUDIX hydrolase include intact and oxidatively damaged nucleoside triphosphates, dinucleoside polyphosphates, nucleotide-sugars and dinucleotide enzymes. These substrates are metabolites or cell signaling molecules that require regulation during different stages of the cell cycle or during periods of stress. In general, the role of the NUDIX hydrolase is to sanitize the nucleotide pools and to maintain cell viability, thereby serving as surveillance and "house-cleaning" enzymes. Substrate specificity is used to define child families within the superfamily. Differences in substrate specificity are determined by the N-terminal extension or by residues in variable loop regions. Mechanistically, substrate hydrolysis occurs by a nucleophilic substitution reaction, with variation in the numbers and roles of divalent cations required. This superfamily consists of at least nine families: IPP (isopentenyl diphosphate) isomerase, ADP ribose pyrophosphatase, mutT pyrophosphohydrolase, coenzyme-A pyrophosphatase, MTH1-7,8-dihydro-8-oxoguanine-triphosphatase, diadenosine tetraphosphate hydrolase, NADH pyrophosphatase, GDP-mannose hydrolase and the c-terminal portion of the mutY adenine glycosylase.


Pssm-ID: 467568 [Multi-domain]  Cd Length: 138  Bit Score: 35.24  E-value: 9.83e-03
                         10        20        30        40        50        60
                 ....*....|....*....|....*....|....*....|....*....|....*....|....
gi 446839874  58 HAAVLLPFDPvRDEVVLIeqiRIAAYDTSETPWLlEMVAGMIEEGESVEDVARREAIEEAGLIV 121
Cdd:cd04685    1 RAARVLLLDP-DGRVLLF---RFHDPDDPGRSWW-FTPGGGVEPGESPEQAAVRELREETGLRL 59
 
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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