GPX1
Summary: The protein encoded by this gene belongs to the glutathione peroxidase family, members of which catalyze the reduction of organic hydroperoxides and hydrogen peroxide (H2O2) by glutathione, and thereby protect cells against oxidative damage. Other studies indicate that H2O2 is also essential for growth-factor mediated signal transduction, mitochondrial function, and maintenance of thiol redox-balance; therefore, by limiting H2O2 accumulation, glutathione peroxidases are also involved in modulating these processes. Several isozymes of this gene family exist in vertebrates, which vary in cellular location and substrate specificity. This isozyme is the most abundant, is ubiquitously expressed and localized in the cytoplasm, and whose preferred substrate is hydrogen peroxide. It is also a selenoprotein, containing the rare amino acid selenocysteine (Sec) at its active site. Sec is encoded by the UGA codon, which normally signals translation termination. The 3' UTRs of selenoprotein mRNAs contain a conserved stem-loop structure, designated the Sec insertion sequence (SECIS) element, that is necessary for the recognition of UGA as a Sec codon, rather than as a stop signal. This gene contains an in-frame GCG trinucleotide repeat in the coding region, and three alleles with 4, 5 or 6 repeats have been found in the human population. The allele with 4 GCG repeats has been significantly associated with breast cancer risk in premenopausal women. Alternatively spliced transcript variants have been found for this gene. Pseudogenes of this locus have been identified on chromosomes X and 21. [provided by RefSeq, Aug 2017].
Name | OMIM ID | Ensembl ID | HGNC ID | PHARMGKB ID | Map Location |
---|---|---|---|---|---|
glutathione peroxidase 1 | MIM:138320 | Ensembl:ENSG00000233276 | HGNC:HGNC:4553 | PA28949 | 3p21.31 |
GO terms in GPX1
Term Type | Evidence Type | GO Term ID | GO Des. |
---|---|---|---|
CC | IDA | GO:0005737 | cytoplasm |
CC | IDA | GO:0005739 | mitochondrion |
CC | TAS | GO:0005759 | mitochondrial matrix |
CC | IDA | GO:0005829 | cytosol |
CC | TAS | GO:0005829 | cytosol |
CC | IDA | GO:0097413 | Lewy body |
BP | IEA | GO:0001659 | temperature homeostasis |
BP | IEA | GO:0001885 | endothelial cell development |
BP | IEA | GO:0002862 | negative regulation of inflammatory response to antigenic stimulus |
BP | TAS | GO:0006195 | purine nucleotide catabolic process |
BP | IEA | GO:0006641 | triglyceride metabolic process |
BP | IDA | GO:0006749 | glutathione metabolic process |
BP | IEA | GO:0007605 | sensory perception of sound |
BP | IEA | GO:0008631 | intrinsic apoptotic signaling pathway in response to oxidative stress |
BP | IEA | GO:0009410 | response to xenobiotic stimulus |
BP | IEA | GO:0009609 | response to symbiotic bacterium |
BP | IMP | GO:0009650 | UV protection |
BP | IMP | GO:0010269 | response to selenium ion |
BP | IEA | GO:0010332 | response to gamma radiation |
BP | IEA | GO:0018158 | protein oxidation |
BP | TAS | GO:0019372 | lipoxygenase pathway |
BP | IEA | GO:0033194 | response to hydroperoxide |
BP | IMP | GO:0033599 | regulation of mammary gland epithelial cell proliferation |
BP | NAS | GO:0034599 | cellular response to oxidative stress |
BP | TAS | GO:0034599 | cellular response to oxidative stress |
BP | IDA | GO:0040029 | regulation of gene expression, epigenetic |
BP | IEA | GO:0042311 | vasodilation |
BP | IMP | GO:0042542 | response to hydrogen peroxide |
BP | IDA | GO:0042744 | hydrogen peroxide catabolic process |
BP | IMP | GO:0043154 | negative regulation of cysteine-type endopeptidase activity involved in apoptotic process |
BP | IEA | GO:0043403 | skeletal muscle tissue regeneration |
BP | IEA | GO:0043523 | regulation of neuron apoptotic process |
BP | IEA | GO:0043534 | blood vessel endothelial cell migration |
BP | IEA | GO:0045444 | fat cell differentiation |
BP | IDA | GO:0045454 | cell redox homeostasis |
BP | IEA | GO:0048741 | skeletal muscle fiber development |
BP | IEA | GO:0051450 | myoblast proliferation |
BP | IEA | GO:0051702 | interaction with symbiont |
BP | IEA | GO:0051897 | positive regulation of protein kinase B signaling |
BP | IMP | GO:0060047 | heart contraction |
BP | IEA | GO:0060055 | angiogenesis involved in wound healing |
BP | IDA | GO:0061136 | regulation of proteasomal protein catabolic process |
BP | IMP | GO:0090201 | negative regulation of release of cytochrome c from mitochondria |
BP | IEA | GO:0098869 | cellular oxidant detoxification |
BP | IMP | GO:1902042 | negative regulation of extrinsic apoptotic signaling pathway via death domain receptors |
BP | IEA | GO:1902176 | negative regulation of oxidative stress-induced intrinsic apoptotic signaling pathway |
BP | ISS | GO:1902905 | positive regulation of supramolecular fiber organization |
MF | IDA | GO:0004602 | glutathione peroxidase activity |
MF | TAS | GO:0004602 | glutathione peroxidase activity |
MF | IPI | GO:0017124 | SH3 domain binding |
Gene expression in normal tissue: GPX1
Gene-model tissue-cancer distribution: Bubble Plot
Gene-drug pathway distribution
Pathways in GPX1
Database | Pathway ID | Pathway Des. |
---|---|---|
reactome | R-HSA-1430728 | Metabolism |
reactome | R-HSA-1430728 | Metabolism |
reactome | R-HSA-15869 | Metabolism of nucleotides |
reactome | R-HSA-2142688 | Synthesis of 5-eicosatetraenoic acids |
reactome | R-HSA-2142712 | Synthesis of 12-eicosatetraenoic acid derivatives |
reactome | R-HSA-2142753 | Arachidonic acid metabolism |
reactome | R-HSA-2142753 | Arachidonic acid metabolism |
reactome | R-HSA-2142770 | Synthesis of 15-eicosatetraenoic acid derivatives |
reactome | R-HSA-2262752 | Cellular responses to stress |
reactome | R-HSA-3299685 | Detoxification of Reactive Oxygen Species |
reactome | R-HSA-556833 | Metabolism of lipids |
reactome | R-HSA-556833 | Metabolism of lipids |
reactome | R-HSA-74259 | Purine catabolism |
reactome | R-HSA-8953897 | Cellular responses to external stimuli |
reactome | R-HSA-8956319 | Nucleobase catabolism |
reactome | R-HSA-8978868 | Fatty acid metabolism |
reactome | R-HSA-8978868 | Fatty acid metabolism |
biocarta | flumazenilpathway | cardiac protection against ros |
humancyc | DETOX1-PWY-1 | reactive oxygen species degradation |
humancyc | PWY-4081 | glutathione redox reactions I |
kegg | hsa00480 | Glutathione metabolism - Homo sapiens (human) |
kegg | hsa00590 | Arachidonic acid metabolism - Homo sapiens (human) |
kegg | hsa04918 | Thyroid hormone synthesis - Homo sapiens (human) |
kegg | hsa05014 | Amyotrophic lateral sclerosis (ALS) - Homo sapiens (human) |
kegg | hsa05016 | Huntington,s disease - Homo sapiens (human) |
pharmgkb | PA165292163 | Doxorubicin Pathway (Cancer Cell), Pharmacodynamics |
pharmgkb | PA165292177 | Doxorubicin Pathway, Pharmacokinetics |
pharmgkb | PA165979754 | Oxidative Stress Pathway (Erythrocyte) |
pharmgkb | PA165980337 | Pathway_PA165980337 |
pharmgkb | PA165980399 | Oxidative Stress Pathway (Erythrocyte) |
pharmgkb | PA165980399 | Oxidative Stress Regulatory Pathway (Erythrocyte) |
pid | p53downstreampathway | Direct p53 effectors |
wikipathways | WP100 | Glutathione metabolism |
wikipathways | WP15 | Selenium Micronutrient Network |
wikipathways | WP176 | Folate Metabolism |
wikipathways | WP2447 | Amyotrophic lateral sclerosis (ALS) |
wikipathways | WP28 | Selenium Metabolism and Selenoproteins |
wikipathways | WP3680 | Association Between Physico-Chemical Features and Toxicity Associated Pathways |
wikipathways | WP3940 | One carbon metabolism and related pathways |
wikipathways | WP3945 | TYROBP Causal Network |
wikipathways | WP408 | Oxidative Stress |
smpdb | SMP00015 | Glutathione Metabolism |
smpdb | SMP00075 | Arachidonic Acid Metabolism |
smpdb | SMP00077 | Piroxicam Action Pathway |
smpdb | SMP00083 | Acetylsalicylic Acid Action Pathway |
smpdb | SMP00084 | Etodolac Action Pathway |
smpdb | SMP00085 | Ketoprofen Action Pathway |
smpdb | SMP00086 | Ibuprofen Action Pathway |
smpdb | SMP00087 | Rofecoxib Action Pathway |
smpdb | SMP00093 | Diclofenac Action Pathway |
smpdb | SMP00094 | Sulindac Action Pathway |
smpdb | SMP00096 | Celecoxib Action Pathway |
smpdb | SMP00098 | Ketorolac Action Pathway |
smpdb | SMP00101 | Suprofen Action Pathway |
smpdb | SMP00102 | Bromfenac Action Pathway |
smpdb | SMP00104 | Indomethacin Action Pathway |
smpdb | SMP00106 | Meloxicam Action Pathway |
smpdb | SMP00109 | Mefenamic Acid Action Pathway |
smpdb | SMP00113 | Oxaprozin Action Pathway |
smpdb | SMP00114 | Nabumetone Action Pathway |
smpdb | SMP00116 | Valdecoxib Action Pathway |
smpdb | SMP00120 | Naproxen Action Pathway |
smpdb | SMP00143 | 5-Oxoprolinuria |
smpdb | SMP00183 | Gamma-Glutamyltransferase Deficiency |
smpdb | SMP00289 | Diflunisal Action Pathway |
smpdb | SMP00337 | Glutathione Synthetase Deficiency |
smpdb | SMP00353 | Leukotriene C4 Synthesis Deficiency |
smpdb | SMP00500 | 5-oxoprolinase deficiency |
smpdb | SMP00501 | Gamma-glutamyl-transpeptidase deficiency |
smpdb | SMP00692 | Antipyrine Action Pathway |
smpdb | SMP00693 | Antrafenine Action Pathway |
smpdb | SMP00694 | Carprofen Action Pathway |
smpdb | SMP00695 | Etoricoxib Action Pathway |
smpdb | SMP00696 | Fenoprofen Action Pathway |
smpdb | SMP00697 | Flurbiprofen Action Pathway |
smpdb | SMP00698 | Magnesium salicylate Action Pathway |
smpdb | SMP00699 | Lumiracoxib Action Pathway |
smpdb | SMP00700 | Lornoxicam Action Pathway |
smpdb | SMP00701 | Phenylbutazone Action Pathway |
smpdb | SMP00702 | Nepafenac Action Pathway |
smpdb | SMP00703 | Trisalicylate-choline Action Pathway |
smpdb | SMP00704 | Tolmetin Action Pathway |
smpdb | SMP00705 | Tiaprofenic Acid Action Pathway |
smpdb | SMP00706 | Tenoxicam Action Pathway |
smpdb | SMP00707 | Salsalate Action Pathway |
smpdb | SMP00708 | Salicylate-sodium Action Pathway |
smpdb | SMP00709 | Salicylic Acid Action Pathway |
smpdb | SMP00710 | Acetaminophen Action Pathway |
Gene in drug-gene network: Network Plot
Gene-drug targets distribution
Gene Structure: PDB
Models in GPX1