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RESEARCH PRODUCT

Docosahexaenoic Acid Induces Increases in [Ca2+]ivia Inositol 1,4,5-Triphosphate Production and Activates Protein Kinase Cγ and -δ via Phosphatidylserine Binding Site: Implication in Apoptosis in U937 Cells

Virginie AiresNaim Akhtar KhanAude PléCédric RébéAli BettaiebAziz HichamiRodolphe Filomenko

subject

Intracellular FluidDocosahexaenoic AcidsApoptosisInositol 145-TrisphosphatePhosphatidylserinesBiologyEnzyme activatorchemistry.chemical_compoundHumansCalcium SignalingPhosphatidylserine bindingProtein Kinase CProtein kinase CCalcium signalingPharmacologyBinding SitesPhospholipase CU937 CellsPhosphatidylserineMolecular biologyCell biologyEnzyme ActivationProtein Kinase C-deltachemistryDocosahexaenoic acidApoptosisMolecular Medicinelipids (amino acids peptides and proteins)

description

We investigated, in monocytic leukemia U937 cells, the effects of docosahexaenoic acid (DHA; 22:6 n-3) on calcium signaling and determined the implication of phospholipase C (PLC) and protein kinase C (PKC) in this pathway. DHA induced dose-dependent increases in [Ca2+]i, which were contributed by intracellular pool, via the production of inositol-1,4,5-triphosphate (IP3) and store-operated Ca2+ (SOC) influx, via opening of Ca2+ release-activated Ca2+ (CRAC) channels. Chemical inhibition of PLC, PKCgamma, and PKCdelta, but not of PKCbeta I/II, PKCalpha, or PKCbetaI, significantly diminished DHA-induced increases in [Ca2+]i. In vitro PKC assays revealed that DHA induced a approximately 2-fold increase in PKCgamma and -delta activities, which were temporally correlated with the DHA-induced increases in [Ca2+]i. In cell-free assays, DHA, but not other structural analogs of fatty acids, activated these PKC isoforms. Competition experiments revealed that DHA-induced activation of both the PKCs was dose-dependently inhibited by phosphatidylserine (PS). Furthermore, DHA induced apoptosis via reactive oxygen species (ROS) production, followed by caspase-3 activation. Chemical inhibition of PKCgamma/delta and of SOC/CRAC channels significantly attenuated both DHA-stimulated ROS production and caspase-3 activity. Our study suggests that DHA-induced activation of PLC/IP3 pathway and activation of PKCgamma/delta, via its action on PS binding site, may be involved in apoptosis in U937 cells.

https://doi.org/10.1124/mol.107.039792