Target intelligence / Profile preview

Lysophosphatidic acid (LPA) metabolism (LPA metabolism)

Target
LPA metabolism
Molecular classification
Enzyme, G protein-coupled receptor, Phosphatase
01

Overview

Lysophosphatidic acid (LPA) metabolism refers to the enzymatic network and signaling axis involving the production, degradation, and receptor-mediated actions of the bioactive lipid LPA. The pathway is primarily initiated by the secreted enzyme Autotaxin (ATX), which possesses lysophospholipase D activity to convert lysophosphatidylcholine into LPA in the extracellular space (PMID: 12105214). LPA subsequently signals through a series of six distinct G protein-coupled receptors (LPA1-6) to drive essential cellular processes such as proliferation, survival, and migration (PMID: 20581098). Dysregulation of this metabolism, particularly through the overproduction of LPA or increased receptor sensitivity, is a hallmark of several fibroproliferative and oncogenic diseases, most notably idiopathic pulmonary fibrosis and metastatic cancer (PMID: 18193031). Therapeutic strategies targeting this pathway include the development of Autotaxin inhibitors to lower systemic LPA levels and selective LPA receptor antagonists to block specific pathological signaling cascades (PMID: 31005427). While the pathway is a promising therapeutic target, challenges include maintaining physiological LPA functions such as wound healing and vascular stability while inhibiting its disease-driving effects.

Other names
Autotaxin-LPA axisLPA signaling pathwayATX-LPA pathwayLysophosphatidic acid signaling
02

Mechanism of action

Inhibition of Autotaxin (ENPP2) to reduce LPA synthesis and antagonism of LPA receptors (primarily LPA1) to block downstream signaling cascades.

03

Biological functions

Signal transductionCell proliferationCell migrationAngiogenesisWound healingLipid signaling
04

Disease associations

Idiopathic pulmonary fibrosisCancerInflammationNeuropathic painSclerodermaChronic kidney disease
05

Safety considerations

Impairment of wound healingVascular integrity issuesEmbryo-fetal toxicityGastrointestinal disturbances
06

Interacting drugs

Ziritaxestat (GLPG1690)

4 more in the full profile.

07

Biomarkers

Plasma lysophosphatidic acid levelsSerum Autotaxin activityLPA1 receptor expression in tissue

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