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Conserved domains on  [gi|14994308|ref|NP_149157|]
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epididymal-specific lipocalin-8 precursor [Mus musculus]

Protein Classification

lipocalin/fatty-acid binding family protein( domain architecture ID 14443759)

lipocalin/fatty-acid binding family protein such as lipocalins, which are transporters for small hydrophobic molecules, including lipids, steroid hormones, bilins, and retinoids

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
lipocalin_5_8-like cd19421
lipocalin similar to human epididymal-specific lipocalin-8, mouse lipocalin-5 and -8, and ...
23-172 8.84e-94

lipocalin similar to human epididymal-specific lipocalin-8, mouse lipocalin-5 and -8, and similar proteins; Lipocalin 5 (LCN5; also known as epididymal retinoic acid binding protein Erabp, mouse epididymal protein 10, MEP10, and E-RABP) and Lipocalin 8 (LCN8; also known as mouse epididymal protein 17, MEP17) are homologous proteins belonging to the epididymis-specific lipocalins; they may play a role in male fertility, and may act as retinoid carrier proteins within the epididymis. In mice, genes encoding the two proteins are contiguous; in humans, there is one gene LCN8 (which has been previously called LCN5). This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


:

Pssm-ID: 381196  Cd Length: 150  Bit Score: 268.71  E-value: 8.84e-94
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  23 TRVELVPEKIAGFWKEVAVASDQKLVLKAQRRVEGLFLTFSGGNVTVKAVYNSSGSCVTESSLGSERDTVGEFAFPGNRE 102
Cdd:cd19421   1 VVKDLDISKILGFWYEVAVASDQGLVLHAEERVEGLFLTLSGNNLTVKTTYNSSGSCVLEKVTGSEGDGPGKFAFPGKRE 80
                        90       100       110       120       130       140       150
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308 103 IHVLDTDYERYTILKLTLLWQGRNFHVLKYFTRSLENEDEPGFWLFREMTADQGLYMLARHGRCAELLKE 172
Cdd:cd19421  81 IHVLDTDYETYAILDITLLWAGRNFRVLKYFTRSLEDDDGEGFWNFREITADTGLYILARDGRCAELLKE 150
 
Name Accession Description Interval E-value
lipocalin_5_8-like cd19421
lipocalin similar to human epididymal-specific lipocalin-8, mouse lipocalin-5 and -8, and ...
23-172 8.84e-94

lipocalin similar to human epididymal-specific lipocalin-8, mouse lipocalin-5 and -8, and similar proteins; Lipocalin 5 (LCN5; also known as epididymal retinoic acid binding protein Erabp, mouse epididymal protein 10, MEP10, and E-RABP) and Lipocalin 8 (LCN8; also known as mouse epididymal protein 17, MEP17) are homologous proteins belonging to the epididymis-specific lipocalins; they may play a role in male fertility, and may act as retinoid carrier proteins within the epididymis. In mice, genes encoding the two proteins are contiguous; in humans, there is one gene LCN8 (which has been previously called LCN5). This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381196  Cd Length: 150  Bit Score: 268.71  E-value: 8.84e-94
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  23 TRVELVPEKIAGFWKEVAVASDQKLVLKAQRRVEGLFLTFSGGNVTVKAVYNSSGSCVTESSLGSERDTVGEFAFPGNRE 102
Cdd:cd19421   1 VVKDLDISKILGFWYEVAVASDQGLVLHAEERVEGLFLTLSGNNLTVKTTYNSSGSCVLEKVTGSEGDGPGKFAFPGKRE 80
                        90       100       110       120       130       140       150
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308 103 IHVLDTDYERYTILKLTLLWQGRNFHVLKYFTRSLENEDEPGFWLFREMTADQGLYMLARHGRCAELLKE 172
Cdd:cd19421  81 IHVLDTDYETYAILDITLLWAGRNFRVLKYFTRSLEDDDGEGFWNFREITADTGLYILARDGRCAELLKE 150
Lipocalin pfam00061
Lipocalin / cytosolic fatty-acid binding protein family; Lipocalins are transporters for small ...
33-157 1.78e-15

Lipocalin / cytosolic fatty-acid binding protein family; Lipocalins are transporters for small hydrophobic molecules, such as lipids, steroid hormones, bilins, and retinoids. The family also encompasses the enzyme prostaglandin D synthase (EC:5.3.99.2). Alignment subsumes both the lipocalin and fatty acid binding protein signatures from PROSITE. This is supported on structural and functional grounds. The structure is an eight-stranded beta barrel.


Pssm-ID: 395015  Cd Length: 143  Bit Score: 69.39  E-value: 1.78e-15
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308    33 AGFWKEVAVASDqKLVLKAQRRVEGLFLTFS---GGNVTVKAVYNSSGSCVTESSLGSERDTVGEF-----AFPGNREIH 104
Cdd:pfam00061   1 SGKWYLIASANF-NELEEEMKALGVGFATIKvleNGNLPVTEITKEGGKCKTVSVTFKKTEEPGKLgvefdEYAGGRKVK 79
                          90       100       110       120       130
                  ....*....|....*....|....*....|....*....|....*....|...
gi 14994308   105 VLDTDYERYTILKLTLLWQGRNFHVLKYFTRSLENEDEPgFWLFREMTADQGL 157
Cdd:pfam00061  80 VLTTDYDNYLIFYQKGDKDGKTTIVRELYGRDPELSPEL-LEKFKKFLKELGI 131
 
Name Accession Description Interval E-value
lipocalin_5_8-like cd19421
lipocalin similar to human epididymal-specific lipocalin-8, mouse lipocalin-5 and -8, and ...
23-172 8.84e-94

lipocalin similar to human epididymal-specific lipocalin-8, mouse lipocalin-5 and -8, and similar proteins; Lipocalin 5 (LCN5; also known as epididymal retinoic acid binding protein Erabp, mouse epididymal protein 10, MEP10, and E-RABP) and Lipocalin 8 (LCN8; also known as mouse epididymal protein 17, MEP17) are homologous proteins belonging to the epididymis-specific lipocalins; they may play a role in male fertility, and may act as retinoid carrier proteins within the epididymis. In mice, genes encoding the two proteins are contiguous; in humans, there is one gene LCN8 (which has been previously called LCN5). This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381196  Cd Length: 150  Bit Score: 268.71  E-value: 8.84e-94
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  23 TRVELVPEKIAGFWKEVAVASDQKLVLKAQRRVEGLFLTFSGGNVTVKAVYNSSGSCVTESSLGSERDTVGEFAFPGNRE 102
Cdd:cd19421   1 VVKDLDISKILGFWYEVAVASDQGLVLHAEERVEGLFLTLSGNNLTVKTTYNSSGSCVLEKVTGSEGDGPGKFAFPGKRE 80
                        90       100       110       120       130       140       150
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308 103 IHVLDTDYERYTILKLTLLWQGRNFHVLKYFTRSLENEDEPGFWLFREMTADQGLYMLARHGRCAELLKE 172
Cdd:cd19421  81 IHVLDTDYETYAILDITLLWAGRNFRVLKYFTRSLEDDDGEGFWNFREITADTGLYILARDGRCAELLKE 150
Lipocalin pfam00061
Lipocalin / cytosolic fatty-acid binding protein family; Lipocalins are transporters for small ...
33-157 1.78e-15

Lipocalin / cytosolic fatty-acid binding protein family; Lipocalins are transporters for small hydrophobic molecules, such as lipids, steroid hormones, bilins, and retinoids. The family also encompasses the enzyme prostaglandin D synthase (EC:5.3.99.2). Alignment subsumes both the lipocalin and fatty acid binding protein signatures from PROSITE. This is supported on structural and functional grounds. The structure is an eight-stranded beta barrel.


Pssm-ID: 395015  Cd Length: 143  Bit Score: 69.39  E-value: 1.78e-15
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308    33 AGFWKEVAVASDqKLVLKAQRRVEGLFLTFS---GGNVTVKAVYNSSGSCVTESSLGSERDTVGEF-----AFPGNREIH 104
Cdd:pfam00061   1 SGKWYLIASANF-NELEEEMKALGVGFATIKvleNGNLPVTEITKEGGKCKTVSVTFKKTEEPGKLgvefdEYAGGRKVK 79
                          90       100       110       120       130
                  ....*....|....*....|....*....|....*....|....*....|...
gi 14994308   105 VLDTDYERYTILKLTLLWQGRNFHVLKYFTRSLENEDEPgFWLFREMTADQGL 157
Cdd:pfam00061  80 VLTTDYDNYLIFYQKGDKDGKTTIVRELYGRDPELSPEL-LEKFKKFLKELGI 131
lipocalin_Ex-FABP-like cd19439
extracellular fatty acid-binding protein; Ex-FABP (also known as siderocalin, lipocalin Q83 or ...
31-138 5.74e-07

extracellular fatty acid-binding protein; Ex-FABP (also known as siderocalin, lipocalin Q83 or protein Ch21) displays a dual ligand binding mode as it can bind siderophore and fatty acids simultaneously. ExFABP has a cavity which extends through the protein and has two separate ligand specificities, one for bacterial siderophores at one end, and other specifically binding co-purified lysophosphatidic acid (LPA), a potent cell signaling molecule, at the other end. As well as acting as an LPA "sensor", Ex-FABP is bacteriostatic, and tightly binds the 2,3-catechol-type ferric siderophores enterobactin, bacillibactin, and parabactin, associated with enteric bacteria and Gram-positive bacilli. This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381214  Cd Length: 142  Bit Score: 46.51  E-value: 5.74e-07
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  31 KIAGFWKEVAVASDQKLVLKAQRRVEGLF--LTFSG-GNVTVKAVYNSSGSCVT-ESSLGSERDTVGEF-AFPGNREIHV 105
Cdd:cd19439   3 ELAGKWYLVALASNTDFFLREKGKMKMMMarISFLGeDELLVSYAFPSPGGCRKwETTFKKTSDDGEVYySEEARKTVEV 82
                        90       100       110
                ....*....|....*....|....*....|...
gi 14994308 106 LDTDYERYTILKLTLLWQGRNFHVLKYFTRSLE 138
Cdd:cd19439  83 LDTDYKSYAVIYATRVKDGRTLHMMRLYSRSQE 115
lipocalin_FABP cd00301
lipocalin/cytosolic fatty acid-binding protein family; Lipocalins are diverse, mainly low ...
31-135 4.37e-06

lipocalin/cytosolic fatty acid-binding protein family; Lipocalins are diverse, mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules as well as membrane bound-receptors. They have a large beta-barrel ligand-binding cavity. Members include retinol-binding protein, retinoic acid-binding protein, complement protein C8 gamma, Can f 2, apolipoprotein D, extracellular fatty acid-binding protein, beta-lactoglobulin, oderant-binding protein, and bacterial lipocalin Blc. Lipocalins are involved in many important processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty acid-binding proteins also bind hydrophobic ligands in a non-covalent, reversible manner, and are involved in protection and shuttling of fatty acids within the cell, and in acquisition and removal of fatty acids from intracellular sites.


Pssm-ID: 381182  Cd Length: 109  Bit Score: 43.69  E-value: 4.37e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  31 KIAGFWKEVAVASDqKLVLKAQRRVEGLFLTFSGGNVTVKAVYNSSGSCVTESSLGSERDTVGEF-----AFPGNREIHV 105
Cdd:cd00301   1 KFSGKWYEVASASN-APEEDEGKCTTAEYTLEGNGNLKVTNSFVRDGVCKSITGTLKKTDGPGKFtvtypGYTGKNELYV 79
                        90       100       110
                ....*....|....*....|....*....|
gi 14994308 106 LDTDYERYTILKLTLLWQGRNFHVLKYFTR 135
Cdd:cd00301  80 LSTDYDNYAIVYSCKNLDGGHTVVAWLLSR 109
lipocalin_C8gamma cd19417
complement protein C8 gamma; Human complement protein C8 gamma, together with C8alpha and ...
29-157 1.47e-05

complement protein C8 gamma; Human complement protein C8 gamma, together with C8alpha and C8beta, form one of five components of the cytolytic membrane attack complex (MAC), a pore-like structure that assembles on bacterial membranes. C8alpha and C8gamma form a disulfide-linked heterodimer that is noncovalently associated with C8beta. MAC plays an important role in the defense against gram-negative bacteria and other pathogenic organisms. C8gamma belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381192  Cd Length: 162  Bit Score: 43.20  E-value: 1.47e-05
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  29 PEKIAGFWKEVAVASDQKLVLKAQRRVEGLFLTFS--GGNVTVKAVYNSSGSCVTESSLGSERDTVGEFAFPGNR----- 101
Cdd:cd19417   8 IQQFSGKWYLVAVASACRYLQESGHKVEATVLTVAppKTTVAVSTFRKLNGICWEIKQEYGKTGTLGRFLLKARRprgnt 87
                        90       100       110       120       130
                ....*....|....*....|....*....|....*....|....*....|....*.
gi 14994308 102 EIHVLDTDYERYTIlkltLLWQGRNFHVLKYFTRSLEnEDEPGFWLFREMTADQGL 157
Cdd:cd19417  88 DIVVGETDYSSYAI----LYYQRAGKLTMKLYGRSTE-LSENILDKFEQRAQKAHL 138
lipocalin_L-PGDS cd19419
lipocalin-type prostaglandin D synthase; Lipocalin-type prostaglandin D synthase (L-PGDS; EC:5. ...
30-116 3.26e-05

lipocalin-type prostaglandin D synthase; Lipocalin-type prostaglandin D synthase (L-PGDS; EC:5.3.99.2) is a secreted enzyme and the second most abundant protein in human cerebrospinal fluid. L-PGDS acts as both, an enzyme and as a lipid transporter, converting prostaglandin H2 to prostaglandin D2 and serving as a carrier for hydrophobic ligands including retinoids, hemoglobin metabolites, thyroid hormones, gangliosides, and fatty acids. L-PGDS belongs to the lipocalin/cytosolic fatty-acid binding protein family which has a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381194  Cd Length: 158  Bit Score: 41.95  E-value: 3.26e-05
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  30 EKIAGFWKEVAVASDQKLVL--KAQRRV-EGLFLTFSGGNVTVKAVYNSSGSCVTESSLGSERDTVGEFAFPGNR----- 101
Cdd:cd19419   8 DKFAGRWYSVGLASNSNWFVekKAKLKMcTTVVAPTTDGNLNLTMTFLKKNGCETRTYLYEKTEQPGRFTYKSPRwgsdh 87
                        90
                ....*....|....*
gi 14994308 102 EIHVLDTDYERYTIL 116
Cdd:cd19419  88 DVRVVETNYDEYALV 102
lipocalin_beta-LG-like cd19416
beta-lactoglobulin and similar proteins; Beta-Lactoglobulin (beta-LG) is the major whey ...
23-142 5.53e-05

beta-lactoglobulin and similar proteins; Beta-Lactoglobulin (beta-LG) is the major whey protein of ruminant species and present in the milk of many other species, with a notable exception of human. It is the major allergen of bovine milk. Beta-LG has been shown to bind hydrophobic ligands such as curcumin, vitamin E or fatty acids, or hydrophilic such as vitamin B9. This group also includes human glycodelin (also known as placental protein 14, pregnancy-associated endometrial alpha-2 globulin, and progestagen-associated endometrial protein) which is involved in crucial biological processes such as reproduction and immune reaction. Four glycoforms of glycodelin have been identified in reproductive tissue that differ in glycosylation and biological activity. This group belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381191  Cd Length: 160  Bit Score: 41.36  E-value: 5.53e-05
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  23 TRVELVPEKIAGFWKEVAVASDQKLVLKAQRR-----VEGLFLTfSGGNVTVKAVYNSSGSCVTESSLGSERDTVGEFA- 96
Cdd:cd19416   4 TMKDLDVQKVAGTWYSLAMAASDISLLDAQSAplrvyIEELKPT-PEGNLEIVLQKWENGRCAEKKLLAEKTKIPAVFKi 82
                        90       100       110       120
                ....*....|....*....|....*....|....*....|....*..
gi 14994308  97 -FPGNREIHVLDTDYERYTILKLTLLWQGRNFHVLKYFTRSLENEDE 142
Cdd:cd19416  83 nALNENKVLVLDTDYDSYLLFCMENSAEPEQSLACQCLVRTLEVDNE 129
lipocalin_15-like cd19422
lipocalin 15 and similar proteins, such as chicken CALbeta; This subfamily includes ...
31-116 1.33e-03

lipocalin 15 and similar proteins, such as chicken CALbeta; This subfamily includes uncharacterized human lipocalin 15, and chicken chondrogenesis-associated lipocalin (CAL) beta which is associated with chondrogenesis and inflammation. It belongs to the lipocalin/cytosolic fatty-acid binding protein family which have a large beta-barrel ligand-binding cavity. Lipocalins are mainly low molecular weight extracellular proteins that bind principally small hydrophobic ligands, and form covalent or non-covalent complexes with soluble macromolecules, as well as membrane bound-receptors. They participate in processes such as ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior. Cytosolic fatty-acid binding proteins, also bind hydrophobic ligands in a non-covalent, reversible manner, and have been implicated in intracellular uptake, transport and storage of hydrophobic ligands, regulation of lipid metabolism and sequestration of excess toxic fatty acids, as well as in signaling, gene expression, inflammation, cell growth and proliferation, and cancer development.


Pssm-ID: 381197  Cd Length: 143  Bit Score: 37.15  E-value: 1.33e-03
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  31 KIAGFWKEVAVASDQKLVLKAQRRVEGLFLTFS---GGNVTVKAVYNSSGSCVTESSLGSERDTVGEFAFPGN--REIHV 105
Cdd:cd19422   1 KFAGLWHVMAMASDCPVFLGMKDHMTSSTTAIRptpEGDLTMHTEFPLPDGCKQIEAEFQKSGQAGHFRVPELgkRDLRV 80
                        90
                ....*....|.
gi 14994308 106 LDTDYERYTIL 116
Cdd:cd19422  81 MDTDYSSYAIL 91
lipocalin_9 cd19429
lipocalin 9; Lipocalin 9 (LCN9) is specifically expressed in the epididymis. It belongs to the ...
31-157 4.92e-03

lipocalin 9; Lipocalin 9 (LCN9) is specifically expressed in the epididymis. It belongs to the lipocalin/cytosolic fatty-acid binding protein family. Lipocalins are typically small extracellular proteins that bind small hydrophobic molecules, such as lipids, steroid hormones, bilins, and retinoids and form covalent or non-covalent complexes with soluble macromolecules as well as membrane bound-receptors. They are involved in many important functions, like ligand transport, modulation of cell growth and metabolism, regulation of immune response, smell reception, tissue development and animal behavior.


Pssm-ID: 381204  Cd Length: 156  Bit Score: 35.97  E-value: 4.92e-03
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 14994308  31 KIAGFWKEVAVASDQKLVLKAQ-------RRVEGLfltfSGGNVTVKAVYNSSGSCVTESSLGSERDTVGEF--AFPGNR 101
Cdd:cd19429  12 RISGVWYSISMASDNMTRIEENgdlrlfiRNIELL----NNGSLQFDFHFMLQGECVAVTVVCEKTKKNGEFsiAYEGEN 87
                        90       100       110       120       130
                ....*....|....*....|....*....|....*....|....*....|....*.
gi 14994308 102 EIHVLDTDYERYTILKLTLLWQGRNFHVLKYFTRSlENEDEPGFWLFREMTADQGL 157
Cdd:cd19429  88 KVLLLETDYSMYIIFYLQNIRNGTETQVLALYGRS-ILLDKTHQRRFENICNKYGL 142
 
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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