SCUBA

ATP5MK — ATP synthase membrane subunit k

ATP5MK belongs to a gene co-expression module in 7 of 28 SCUBA cell types. Each module groups genes that rise and fall together in that cell type; the genes it shares a module with are its closest co-expression partners there.

ATP5MK's module in each cell type

Cell typeModuleShares the module with
EnterocytesATP Synthase OXPHOS
Mitochondrial & OxPhos
ATP5F1A, ATP5F1B, ATP5MF, COX4I1, COX7A2, DBI, EIF3KView in SCUBA
Gamma-delta T cellsATP Synthase Complex
Mitochondrial & OxPhos
ATP5F1D, ATP5F1E, ATP5MC2, ATP5MC3, ATP5MF, ATP5MG, ATP5PD, ATP5PF +23 more
Innate lymphoid cellsMitochondrial Organization
Mitochondrial & OxPhos
ARL5A, ATP5MJ, BBLN, C18orf32, CIAO2B, CYRIB, EEF1G, FAM174C +21 moreView in SCUBA
MacrophagesATP Synthase Complex
Mitochondrial & OxPhos
ATP5MJ, ATP5PF, COX7A2, COX7B, GTF2A2, GTF3C6, LSM6, MGST3 +14 moreView in SCUBA
Mucosal-associated invariant T cellATP Synthase Complex
Mitochondrial & OxPhos
ARL6IP4, ATP5F1E, ATP5ME, COMMD6, COPS9, COX7C, HAX1, NDUFA1 +3 more
Natural Killer cellsMitochondrial Membrane Organization
Mitochondrial & OxPhos
ATP5MJ, BBLN, CIAO2B, GABARAP, H3-3A, MICOS10, PHB1, SEPTIN7 +1 moreView in SCUBA
Smooth muscle cellsHistone Variant Chromatin
DNA/chromatin regulation
ATP5MJ, ECRG4, H2AZ1, H2AZ2, H3-3A, H3-3B, MACROH2A1, MICOS10 +6 moreView in SCUBA

About the gene

SynonymsAGP, ATP5MD, bA792D24.4, DAPIT, MGC14697, USMG5
Chromosome10: 103389041-103396492
Predicted locationMembrane
Essential geneNo
Protein classDisease related genes, Human disease related genes, Metabolic proteins, Predicted membrane proteins

Function

Subunit k, of the mitochondrial membrane ATP synthase complex (F(1)F(0) ATP synthase or Complex V) that produces ATP from ADP in the presence of a proton gradient across the membrane which is generated by electron transport complexes of the respiratory chain (Probable). ATP synthase complex consist of a soluble F(1) head domain - the catalytic core - and a membrane F(1) domain - the membrane proton channel (By similarity). These two domains are linked by a central stalk rotating inside the F(1) region and a stationary peripheral stalk (By similarity). During catalysis, ATP synthesis in the catalytic domain of F(1) is coupled via a rotary mechanism of the central stalk subunits to proton translocation (Probable). In vivo, can only synthesize ATP although its ATP hydrolase activity can be activated artificially in vitro (By similarity). Part of the complex F(0) domain (By similarity). Required for dimerization of the ATP synthase complex and as such regulates ATP synthesis in the mitochondria.

Human Protein Atlas · Open Targets · UniProt

Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.