- Gene 'Phmamm.CG.MTP2014.S1...'
Gene Card
Best human hits
GSR; TXNRD1; TXNRD2
Species
Unique Gene ID
Phmamm.g00004298
Gene Model ID
Phmamm.CG.MTP2014.S152.g04298
Location
S152:198724..207487
Transcript Models and Sequences
AHC0AAA75YK05
Plate: Plate_75_K05
AHC0AAA184YM16
Plate: Plate_184_M16
AHC0AAA196YN06
Plate: Plate_196_N06
n/a
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The 'History' button on the left side permits you to see the changes you have made and eventually to go back.
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You can Press 'Ctrl' Key + Left Mouse Click on nodes to do a multiple selection.

IPR Term | Analysis | Definition |
---|---|---|
FAD/NAD-linked_Rdtase_dimer_sf | Gene3D | FAD/NAD-linked reductase, dimerisation domain superfamily |
FAD/NAD-bd_sf | Gene3D | FAD/NAD(P)-binding domain superfamily |
FAD/NAD-linked_Rdtase_dimer_sf | SUPERFAMILY | FAD/NAD-linked reductase, dimerisation domain superfamily |
Pyr_nuc-diS_OxRdtase | PIRSF | Pyridine nucleotide-disulphide oxidoreductase, class I |
Glutathione_Rdtase_euk/bac | PANTHER | Glutathione reductase, eukaryote/bacterial |
FAD/NAD-bd_sf | SUPERFAMILY | FAD/NAD(P)-binding domain superfamily |
Pyr_OxRdtase_I_AS | ProSitePatterns | Pyridine nucleotide-disulphide oxidoreductase, class I, active site |
FAD/NAD-binding_dom | Pfam | FAD/NAD(P)-binding domain |
Pyr_nucl-diS_OxRdtase_dimer | Pfam | Pyridine nucleotide-disulphide oxidoreductase, dimerisation domain |
GO Term | Annotation Origin | Type |
---|---|---|
protein binding | Blast | molecular function |
cell | Orthology | cellular component |
nucleus | Blast | cellular component |
nucleoplasm | Blast | cellular component |
cytoplasm | Orthology | cellular component |
mitochondrion | Orthology | cellular component |
mitochondrial matrix | Orthology | cellular component |
cytosol | Orthology | cellular component |
flavin adenine dinucleotide binding | Orthology | molecular function |
oxidation-reduction process | Orthology | biological process |
extracellular exosome | Orthology | cellular component |
catalytic activity | Orthology | molecular function |
peptide metabolic process | Orthology | biological process |
cellular metabolic process | Orthology | biological process |
plasma membrane part | Orthology | cellular component |
cell surface | Orthology | cellular component |
cellular response to stress | Orthology | biological process |
response to oxidative stress | Orthology | biological process |
nucleotide binding | Orthology | molecular function |
coenzyme binding | Orthology | molecular function |
nucleolus | Blast | cellular component |
GO Term | SpeciesCe = Caenorhabditis elegans Dr = Danio rerio Dm = Drosophila melanogaster Gg = Gallus gallus Hs = Homo sapiens Mm = Mus musculus Sc = Saccharomyces cerevisiae |
Type |
---|---|---|
glutathione-disulfide reductase activity | Hs | molecular function |
cytoplasm | Hs | cellular component |
mitochondrion | Hs | cellular component |
mitochondrial matrix | Hs | cellular component |
cytosol | Hs | cellular component |
glutathione metabolic process | Hs | biological process |
electron carrier activity | Hs | molecular function |
external side of plasma membrane | Hs | cellular component |
oxidoreductase activity | Hs | molecular function |
oxidoreductase activity, acting on a sulfur group of donors, NAD(P) as acceptor | Hs | molecular function |
electron transport chain | Hs | biological process |
cellular response to oxidative stress | Hs | biological process |
cell redox homeostasis | Hs | biological process |
flavin adenine dinucleotide binding | Hs | molecular function |
NADP binding | Hs | molecular function |
oxidation-reduction process | Hs | biological process |
extracellular exosome | Hs | cellular component |
cellular oxidant detoxification | Hs | biological process |
GO Term | SpeciesCe = Caenorhabditis elegans Dr = Danio rerio Dm = Drosophila melanogaster Gg = Gallus gallus Hs = Homo sapiens Mm = Mus musculus Sc = Saccharomyces cerevisiae |
Type | Score | E-value |
---|---|---|---|---|
fibrillar center | Hs | cellular component | 181 | 1.36e-50 |
glutathione-disulfide reductase activity | Hs | molecular function | 512 | 1.15e-179 |
thioredoxin-disulfide reductase activity | Hs | molecular function | 213 | 3.76e-63 |
protein binding | Hs | molecular function | 213 | 3.76e-63 |
cell | Hs | cellular component | 213 | 3.76e-63 |
nucleus | Hs | cellular component | 181 | 1.36e-50 |
nucleoplasm | Hs | cellular component | 181 | 1.36e-50 |
cytoplasm | Hs | cellular component | 512 | 1.15e-179 |
mitochondrion | Hs | cellular component | 512 | 1.15e-179 |
mitochondrial matrix | Hs | cellular component | 512 | 1.15e-179 |
cytosol | Hs | cellular component | 512 | 1.15e-179 |
electron carrier activity | Hs | molecular function | 512 | 1.15e-179 |
external side of plasma membrane | Hs | cellular component | 512 | 1.15e-179 |
protein disulfide oxidoreductase activity | Hs | molecular function | 181 | 1.36e-50 |
oxidoreductase activity | Hs | molecular function | 512 | 1.15e-179 |
oxidoreductase activity, acting on a sulfur group of donors, NAD(P) as acceptor | Hs | molecular function | 512 | 1.15e-179 |
flavin adenine dinucleotide binding | Hs | molecular function | 512 | 1.15e-179 |
NADP binding | Hs | molecular function | 512 | 1.15e-179 |
extracellular exosome | Hs | cellular component | 512 | 1.15e-179 |
methylselenol reductase activity | Hs | molecular function | 181 | 1.36e-50 |
methylseleninic acid reductase activity | Hs | molecular function | 181 | 1.36e-50 |
GO Term | Analysis | Type | e-value |
---|---|---|---|
glutathione-disulfide reductase activity | PANTHER | molecular function | 1.1E-190 |
glutathione metabolic process | PANTHER | biological process | 1.1E-190 |
electron carrier activity | PIRSF | molecular function | 2.3E-22 |
oxidoreductase activity | Gene3D | molecular function | 8.3E-47 |
oxidoreductase activity, acting on a sulfur group of donors, NAD(P) as acceptor | ProSitePatterns | molecular function | |
cell redox homeostasis | Pfam | biological process | 1.9E-35 |
flavin adenine dinucleotide binding | PANTHER | molecular function | 1.1E-190 |
NADP binding | PANTHER | molecular function | 1.1E-190 |
oxidation-reduction process | PANTHER | biological process | 1.1E-190 |