Target intelligence / Profile preview

Phospholipase A2, membrane associated (PLA2)

Target
PLA2
Molecular classification
Enzyme, Lipid hydrolase, Phospholipid-metabolizing enzyme
01

Overview

Phospholipase A², membrane associated, refers to a family of enzymes that hydrolyze the sn‑2 acyl bond in glycerophospholipids within biological membranes. This reaction releases free fatty acids such as arachidonic acid—a precursor for pro-inflammatory eicosanoids—and lysophospholipid products. These enzymes play critical roles in cell signaling pathways related to inflammation, immune response, host defense against pathogens by disrupting microbial membranes, lipid remodeling during cellular stress or injury, and regulation of vascular tone through bioactive lipids. The superfamily includes several groups based on structure and function: secreted sPLAs² act extracellularly; cytosolic cPLAs² translocate upon activation; calcium-independent iPLAs² function without Ca²⁺; while lipoprotein-associated Lp‑PLAs² circulate bound to LDL/HDL particles. Dysregulation has been implicated in numerous diseases including chronic inflammation, cardiovascular disorders like atherosclerosis, neurodegeneration, infection susceptibility, and cancer progression. Multiple small-molecule inhibitors have been developed targeting different isoforms either at their catalytic site or allosteric regulatory regions.

Other names
PLA₂Phosphatidylcholine 2-acylhydrolaseSecretory phospholipase A₂ (sPLA₂)Cytosolic phospholipase A₂ (cPLA₂)Calcium-dependent phospholipase A₂Group IV phospholipase A₂Group IIA/V/X etc. depending on isoform
02

Mechanism of action

– Competitive inhibition at the active site blocking substrate access or catalysis. – Allosteric inhibition preventing conformational activation upon membrane association. – Chelation/blockade of essential cofactors such as Ca²⁺ required for activity.

03

Biological functions

Hydrolysis of the sn‑2 ester bond in glycerophospholipidsRelease of arachidonic acid from membrane phospholipidsGeneration of lysophospholipid and free fatty acidsRegulation of inflammatory response via eicosanoid productionHost antimicrobial defense by hydrolyzing bacterial membranesLipid remodeling and cell signaling modulation
04

Disease associations

Inflammation (including arthritis and asthma)Cardiovascular disease/atherosclerosis (notably Lp‑PLA₂)Neurodegenerative diseasesInfection/host defense against bacteriaCancer progression/metastasis in some contexts
05

Safety considerations

Non-specific inhibition can disrupt normal lipid metabolism leading to toxicity.Potential off-target effects due to multiple isoforms with distinct physiological roles.Risk of immunosuppression if host defense functions are impaired.
06

Interacting drugs

Varespladib (a broad-spectrum sPLA₂ inhibitor)

2 more in the full profile.

07

Biomarkers

Elevated levels/activity in plasma or tissues can serve as biomarkers for cardiovascular risk/inflammation—especially Lp‑PLA₂ activity in atherosclerosis.Increased expression/activity may indicate ongoing inflammatory processes.

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