Oxidative phosphorylation - Homo sapiens (human) - Pathway Page
Name Oxidative phosphorylation - Homo sapiens (human)
Resource KEGG
Genes ATP12A UQCRQ NDUFA4L2 ATP5F1B ATP5F1E ATP6V1F ATP6V0E2 COX6A2 MT-ATP8 MT-ND3 ATP6V0E1 NDUFV1 ATP5MC1 ATP6V0A1 TCIRG1 NDUFA4 ATP5F1C NDUFS1 ATP5PD NDUFB3 NDUFB2 COX6A1 NDUFB4 NDUFS2 COX7B2 UQCR10 NDUFS4 ATP6V1B2 ATP6V0C UQCR11 ATP6V0A4 COX8A ATP5PB NDUFV2 COX15 ATP6V0D2 NDUFA10 ATP6V1G2 NDUFC2 UQCRFS1 COX7C NDUFV3 NDUFB11 SDHB ATP6V0B CYC1 NDUFA7 COX5A MT-ND4L NDUFC2-KCTD14 NDUFB10 COX6B2 ATP6V1D COX7A2L ATP6V1E1 UQCRHL ATP5MF MT-ND2 NDUFC1 MT-ND1 ATP5F1D NDUFA1 SDHA ATP4B MT-CO1 COX6C MT-ND6 NDUFA8 ATP5MG NDUFAB1 ATP6V1H ATP6V0D1 ATP6V1E2 UQCRB ATP5PO COX7A2 ATP5MC2 PPA2 MT-ND4 COX11 LHPP PPA1 ATP5F1A COX7B SDHD MT-ND5 NDUFB1 MT-CO2 ATP6AP1 NDUFB9 NDUFB8 NDUFS3 NDUFA11 NDUFB5 ATP5PF NDUFS7 UQCRH ATP6V1C2 COX8C ATP6V1A MT-CO3 COX10 NDUFS6 ATP6V1G3 NDUFA6 ATP4A MT-ATP6 COX7A1 ATP6V1C1 ATP5ME ATP6V1B1 NDUFB6 COX6B1 COX4I1 NDUFA9 UQCRC2 COX4I2 NDUFS8 NDUFA12 NDUFA5 ATP5MC3 NDUFA3 NDUFS5 ATP6V1G1 UQCRC1 NDUFB7 COX5B MT-CYB SDHC NDUFA2 NDUFA13 COX17 ATP6V0A2
Size 133
Hierarchy Landscape

The following plot represents the hierarchical landscape of 'Oxidative phosphorylation - Homo sapiens (human)'. The hierarchical tree allows to click on the pathways with children (black border) and continue the exploration. All nodes are colored by their source (click on the map for the legend) and cross-link to the original pathway page.

MetabolismAdipocytokine signaling pathwayAlanine, aspartate and glutamate metabolismAldosterone synthesis and secretionAmino sugar and nucleotide sugar metabolismAminoacyl-tRNA biosynthesisArginine and proline metabolismArginine biosynthesisAscorbate and aldarate metabolismBiosynthesis of amino acidsBiosynthesis of unsaturated fatty acidsButanoate metabolismCaffeine metabolismCarbon metabolismCholesterol metabolismCortisol synthesis and secretionCysteine and methionine metabolismD-Arginine and D-ornithine metabolismD-Glutamine and D-glutamate metabolismDrug metabolism - cytochrome P450Drug metabolism - other enzymesEther lipid metabolismFatty acid biosynthesisFatty acid degradationFatty acid elongationFatty acid metabolismFolate biosynthesisFructose and mannose metabolismGlycerolipid metabolismGlycerophospholipid metabolismGlycine, serine and threonine metabolismGlycolysis / GluconeogenesisGlycosaminoglycan biosynthesis - chondroitin sulfate / dermatan sulfateGlycosaminoglycan biosynthesis - heparan sulfate / heparinGlycosaminoglycan biosynthesis - keratan sulfateGlycosaminoglycan degradationGlyoxylate and dicarboxylate metabolismHistidine metabolismLinoleic acid metabolismLipoic acid metabolismNeomycin, kanamycin and gentamicin biosynthesisNicotinate and nicotinamide metabolismNitrogen metabolismOne carbon pool by folateOther glycan degradationOvarian steroidogenesisOxidative phosphorylationPantothenate and CoA biosynthesisPentose and glucuronate interconversionsPeroxisomePhenylalanine metabolismPhenylalanine, tyrosine and tryptophan biosynthesisPhosphatidylinositol signaling systemPhosphonate and phosphinate metabolismPorphyrin and chlorophyll metabolismPrimary bile acid biosynthesisPropanoate metabolismRetinol metabolismSelenocompound metabolismStarch and sucrose metabolismSteroid biosynthesisSteroid hormone biosynthesisSulfur metabolismSynthesis and degradation of ketone bodiesTaurine and hypotaurine metabolismTerpenoid backbone biosynthesisThermogenesisThiamine metabolismTyrosine metabolismUbiquinone and other terpenoid-quinone biosynthesisValine, leucine and isoleucine biosynthesisValine, leucine and isoleucine degradationVitamin B6 metabolismalpha-Linolenic acid metabolismbeta-Alanine metabolismAcetylcholine SynthesisAflatoxin B1 metabolismAlanine and aspartate metabolismAmino Acid metabolismAmino acid conjugation of benzoic acidArachidonate Epoxygenase / Epoxide HydrolaseArylamine metabolismBenzene metabolismBenzo(a)pyrene metabolismBiogenic Amine SynthesisBiosynthesis and regeneration of tetrahydrobiopterin (BH4) and catabolism of phenylalanine, including diseasesButyrate-induced histone acetylationCaffeine and Theobromine metabolismCholesterol BiosynthesisCocaine metabolismCodeine and Morphine MetabolismColchicine Metabolic PathwayComposition of Lipid ParticlesCori CycleDegradation pathway of sphingolipids, including diseasesDiclofenac Metabolic PathwayDopamine metabolismEicosanoid SynthesisEnergy MetabolismEstrogen metabolismFatty Acid Beta OxidationFatty Acid BiosynthesisFatty Acid Omega OxidationFelbamate MetabolismFluoropyrimidine ActivityFolate MetabolismGanglio Sphingolipid MetabolismGlobo Sphingolipid MetabolismGlucocorticoid and Mineralcorticoid MetabolismGlutathione metabolismGlycolysis and GluconeogenesisGut-Liver Indole MetabolismHIF1A and PPARG regulation of glycolysisHeroin metabolismIron metabolism in placentaKennedy pathway from SphingolipidsLidocaine metabolismMetabolism of Spingolipids in ER and Golgi apparatusMetabolism of Tetrahydrocannabinol (THC)Mitochondrial LC-Fatty Acid Beta-OxidationNAD Biosynthesis II (from tryptophan)NAD+ biosynthetic pathwaysNAD+ metabolismNicotine MetabolismNuclear Receptors in Lipid Metabolism and ToxicityOne Carbon MetabolismOne carbon donorOne carbon metabolism and related pathwaysPPAR Alpha PathwayPPAR signaling pathwayPeroxisomal beta-oxidation of tetracosanoyl-CoAPhase I biotransformations, non P450Polyol PathwayProstaglandin Synthesis and RegulationPyrimidine metabolismSelenium Metabolism and SelenoproteinsSteroid BiosynthesisSulfation Biotransformation ReactionTamoxifen metabolismTrans-sulfuration and one carbon metabolismTrans-sulfuration pathwayTryptophan catabolism leading to NAD+ productionTryptophan metabolismUrea cycle and metabolism of amino groupsValproic acid pathwayVitamin A and Carotenoid MetabolismVitamin B12 Metabolism
Equivalent Pathways

About

ComPath is developed and maintained in an academic capacity by Daniel Domingo-Fernández and Charles Tapley Hoyt at the Fraunhofer SCAI Department of Bioinformatics. This web application relies on data loaded from KEGG, Reactome, and WikiPathways Restful APIs, as well as MSigDB. More information here.