GSTO2 (glutathione S-transferase omega 2)
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Gene
Gene information from NCBI Gene database.
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| Entrez ID | 119391 |
| Gene name | Glutathione S-transferase omega 2 |
| Gene symbol | GSTO2 |
| Synonyms (NCBI Gene) |
GSTO 2-2bA127L20.1
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| Chromosome | 10 |
| Chromosome location | 10q25.1 |
| Summary | The protein encoded by this gene is an omega class glutathione S-transferase (GST). GSTs are involved in the metabolism of xenobiotics and carcinogens. Four transcript variants encoding different isoforms have been found for this gene.[provided by RefSeq, |
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miRNA
miRNA information provided by mirtarbase database.
70
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Gene ontology (GO)
Gene Ontology (GO) annotations describing the biological processes, molecular functions, and cellular components associated with a gene.
23
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Other IDs
Other IDs provides unique identifiers for this gene in OMIM, HGNC, and Ensembl databases.
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Protein
Protein information from UniProt database.
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UniProt ID
Unique identifier for the protein in the UniProt database. Click to view detailed protein information.
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Q9H4Y5 | |||||||||||||||
| Protein name | Glutathione S-transferase omega-2 (GSTO-2) (EC 2.5.1.18) (Glutathione S-transferase omega 2-2) (GSTO 2-2) (Glutathione-dependent dehydroascorbate reductase) (EC 1.8.5.1) (Monomethylarsonic acid reductase) (MMA(V) reductase) (EC 1.20.4.2) | |||||||||||||||
| Protein function | Exhibits glutathione-dependent thiol transferase activity. Has high dehydroascorbate reductase activity and may contribute to the recycling of ascorbic acid. Participates in the biotransformation of inorganic arsenic and reduces monomethylarsoni | |||||||||||||||
| PDB | 3Q18 , 3Q19 , 3QAG | |||||||||||||||
| Family and domains |
Pfam
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| Tissue specificity | TISSUE SPECIFICITY: Expressed in a range of tissues, including the liver, kidney, skeletal muscle and prostate. Strongest expression in the testis. {ECO:0000269|PubMed:12618591}. | |||||||||||||||
| Sequence |
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| Sequence length | 243 | |||||||||||||||
| Interactions | View interactions | |||||||||||||||
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Pathways
Pathway information has different metabolic/signaling pathways associated with genes.
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