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NCOR1 NCOR1 CCBL1 CCBL1 TXN TXN CTH CTH TXN2 TXN2 TXNRD2 TXNRD2 CCBL2 CCBL2 TRIP6 TRIP6 SEPHS2 SEPHS2 SCLY SCLY SEPHS1 SEPHS1
"TXNRD2" - thioredoxin reductase 2 in Homo sapiens
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Predicted Interactions
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TXNRD2thioredoxin reductase 2 (524 aa)    
Predicted Functional Partners:
TXN2
thioredoxin 2; Has an anti-apoptotic function and plays an important role in the regulation of mitochondrial membrane potential. Could be involved in the resistance to anti-tumor agents. Possesses a dithiol-reducing activity (166 aa)
        score_image score_image score_image   0.983
TXN
thioredoxin; Participates in various redox reactions through the reversible oxidation of its active center dithiol to a disulfide and catalyzes dithiol-disulfide exchange reactions. Plays a role in the reversible S-nitrosylation of cysteine residues in target proteins, and thereby contributes to the response to intracellular nitric oxide. Nitrosylates the active site Cys of CASP3 in response to nitric oxide (NO), and thereby inhibits caspase-3 activity. Induces the FOS/JUN AP-1 DNA-binding activity in ionizing radiation (IR) cells through its oxidation/reduction status and stimulates A [...] (105 aa)
        score_image   score_image   0.947
SEPHS2
selenophosphate synthetase 2; Synthesizes selenophosphate from selenide and ATP (448 aa)
          score_image score_image   0.946
SEPHS1
selenophosphate synthetase 1; Synthesizes selenophosphate from selenide and ATP (392 aa)
          score_image score_image   0.921
NCOR1
nuclear receptor corepressor 1; Mediates transcriptional repression by certain nuclear receptors. Part of a complex which promotes histone deacetylation and the formation of repressive chromatin structures which may impede the access of basal transcription factors (2440 aa)
        score_image   score_image   0.921
CCBL1
cysteine conjugate-beta lyase, cytoplasmic; Catalyzes the irreversible transamination of the L- tryptophan metabolite L-kynurenine to form kynurenic acid (KA). Metabolizes the cysteine conjugates of certain halogenated alkenes and alkanes to form reactive metabolites. Catalyzes the beta- elimination of S-conjugates and Se-conjugates of L- (seleno)cysteine, resulting in the cleavage of the C-S or C-Se bond (422 aa)
          score_image score_image   0.918
CCBL2
cysteine conjugate-beta lyase 2 (454 aa)
          score_image score_image   0.918
CTH
cystathionase (cystathionine gamma-lyase); Catalyzes the last step in the trans-sulfuration pathway from methionine to cysteine. Has broad substrate specificity. Converts cystathionine to cysteine, ammonia and 2-oxobutanoate. Converts two cysteine molecules to lanthionine and hydrogen sulfide. Can also accept homocysteine as substrate. Specificity depends on the levels of the endogenous substrates. Generates the endogenous signaling molecule hydrogen sulfide (H2S), and so contributes to the regulation of blood pressure. Acts as a cysteine-protein sulfhydrase by mediating sulfhydration [...] (405 aa)
          score_image score_image   0.911
SCLY
selenocysteine lyase; Catalyzes the decomposition of L-selenocysteine to L- alanine and elemental selenium (By similarity) (453 aa)
          score_image score_image   0.902
TRIP6
thyroid hormone receptor interactor 6; Relays signals from the cell surface to the nucleus to weaken adherens junction and promote actin cytoskeleton reorganization and cell invasiveness. Involved in lysophosphatidic acid-induced cell adhesion and migration. Acts as a transcriptional coactivator for NF-kappa-B and JUN, and mediates the transrepression of these transcription factors induced by glucocorticoid receptor (476 aa)
            score_image   0.877
Your Current Organism:
Homo sapiens
NCBI taxonomy Id: 9606
Other names: H. sapiens, Homo, Homo sapiens, human, man
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