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Publication : Cytosolic phospholipase A₂ε drives recycling through the clathrin-independent endocytic route.

First Author  Capestrano M Year  2014
Journal  J Cell Sci Volume  127
Issue  Pt 5 Pages  977-93
PubMed ID  24413173 Mgi Jnum  J:287045
Mgi Id  MGI:6414707 Doi  10.1242/jcs.136598
Citation  Capestrano M, et al. (2014) Cytosolic phospholipase A(2)epsilon drives recycling through the clathrin-independent endocytic route. J Cell Sci 127(Pt 5):977-93
abstractText  Previous studies have demonstrated that membrane tubule-mediated transport events in biosynthetic and endocytic routes require phospholipase A2 (PLA2) activity. Here, we show that cytosolic phospholipase A2epsilon (cPLA2epsilon, also known as PLA2G4E) is targeted to the membrane compartments of the clathrin-independent endocytic route through a C-terminal stretch of positively charged amino acids, which allows the enzyme to interact with phosphoinositide lipids [especially PI(4,5)P2] that are enriched in clathrin-independent endosomes. Ablation of cPLA2epsilon suppressed the formation of tubular elements that carry internalized clathrin-independent cargoes, such as MHC-I, CD147 and CD55, back to the cell surface and, therefore, caused their intracellular retention. The ability of cPLA2epsilon to support recycling through tubule formation relies on the catalytic activity of the enzyme, because the inactive cPLA2epsilon(S420A) mutant was not able to recover either tubule growth or transport from clathrin-independent endosomes. Taken together, our findings indicate that cPLA2epsilon is a new important regulator of trafficking processes within the clathrin-independent endocytic and recycling route. The affinity of cPLA2epsilon for this pathway supports a new hypothesis that different PLA2 enzymes use selective targeting mechanisms to regulate tubule formation locally during specific trafficking steps in the secretory and/or endocytic systems.
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