SCUBA

PNPLA8 — Patatin like phospholipase domain containing 8

PNPLA8 belongs to a gene co-expression module in 6 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.

PNPLA8's module in each cell type

Cell typeModuleShares the module with
CD4⁺ T cellsIL6-STAT3 Signaling
Intercellular communication
ARID5A, ARL6IP1, AZIN1, CCDC66, CDC40, CEMIP2, CHD1, CSNK1D +13 moreView in SCUBA
Gamma-delta T cellsChromatin Epigenetic Regulation
DNA/chromatin regulation
ADNP2, ARID4B, CEBPZ, ELL2, ENSG00000285976, ETF1, HIPK1, JMJD1C +17 more
Lymphatic endothelialNRF2 Oxidative Stress
Stress
B4GALT1, CTTNBP2NL, DDX21, DRAM1, GCH1, HNRNPF, MSN, NFE2L2 +11 moreView in SCUBA
MacrophagesAutophagy Vesicle Trafficking
Lysosomal & pahgocytosis
ADNP2, AGO2, AP1G1, ARFGAP3, ATG2A, BANP, CHD1, CHD2 +26 moreView in SCUBA
MonocytesWnt/AP-1 Activation
Inflammatory
B4GALT1, BZW1, CHD1, CTNNB1, ETF1, FOSL2, GABARAPL1, GPCPD1 +2 moreView in SCUBA
NeutrophilsNF-κB Inflammatory Transcription
Inflammatory
BID, C9orf72, DENND5A, ELL2, ETF1, N4BP1, NFE2L2, NFKB1 +10 more

About the gene

SynonymsIPLA2-2, IPLA2G, iPLA2gamma
Chromosome7: 108470417-108569666
Predicted locationIntracellular, Membrane
Essential geneNo
Protein classDisease related genes, Enzymes, Human disease related genes, Metabolic proteins, Potential drug targets, Predicted intracellular proteins, Predicted membrane proteins
Molecular functionHydrolase
Biological processLipid degradation, Lipid metabolism

Function

Calcium-independent and membrane-bound phospholipase, that catalyzes the esterolytic cleavage of fatty acids from glycerophospholipids to yield free fatty acids and lysophospholipids, hence regulating membrane physical properties and the release of lipid second messengers and growth factors. Hydrolyzes phosphatidylethanolamine, phosphatidylcholine and probably phosphatidylinositol with a possible preference for the former. Also has a broad substrate specificity in terms of fatty acid moieties, hydrolyzing saturated and mono-unsaturated fatty acids at nearly equal rates from either the sn-1 or sn-2 position in diacyl phosphatidylcholine. However, has a weak activity toward polyunsaturated fatty acids at the sn-2 position, and thereby favors the production of 2-arachidonoyl lysophosphatidylcholine, a key branch point metabolite in eicosanoid signaling. On the other hand, can produce arachidonic acid from the sn-1 position of diacyl phospholipid and from the sn-2 position of arachidonate-containing plasmalogen substrates. Therefore, plays an important role in the mobilization of arachidonic acid in response to cellular stimuli and the generation of lipid second messengers. Can also hydrolyze lysophosphatidylcholine. In the mitochondrial compartment, catalyzes the hydrolysis and release of oxidized aliphatic chains from cardiolipin and integrates mitochondrial bioenergetics and signaling. It is essential for maintaining efficient bioenergetic mitochondrial function through tailoring mitochondrial membrane lipid metabolism and composition.

Human Protein Atlas · Open Targets · UniProt

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