Publication | Open Access
Sequential Regulation of DOCK2 Dynamics by Two Phospholipids During Neutrophil Chemotaxis
264
Citations
19
References
2009
Year
Proteinlipid InteractionCytoskeletonLipid MovementNeutrophil ChemotaxisCellular PhysiologyRac ActivationIntracellular Dock2 DynamicsCell SignalingBiophysicsBiochemistryCell TraffickingProtein TransportSequential RegulationDock2 DynamicsCell BiologySignal TransductionNatural SciencesCell MigrationCell MotilityIntracellular TraffickingCellular BiochemistryMedicineLeading Edges
During chemotaxis, activation of the small guanosine triphosphatase Rac is spatially regulated to organize the extension of membrane protrusions in the direction of migration. In neutrophils, Rac activation is primarily mediated by DOCK2, an atypical guanine nucleotide exchange factor. Upon stimulation, we found that DOCK2 rapidly translocated to the plasma membrane in a phosphatidylinositol 3,4,5-trisphosphate-dependent manner. However, subsequent accumulation of DOCK2 at the leading edge required phospholipase D-mediated synthesis of phosphatidic acid, which stabilized DOCK2 there by means of interaction with a polybasic amino acid cluster, resulting in increased local actin polymerization. When this interaction was blocked, neutrophils failed to form leading edges properly and exhibited defects in chemotaxis. Thus, intracellular DOCK2 dynamics are sequentially regulated by distinct phospholipids to localize Rac activation during neutrophil chemotaxis.
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