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Rho GTPases Control Polarity, Protrusion, and Adhesion during Cell Movement

The Journal of Cell Biology · 1999 · Vol. 144(6) · pp. 1235–1244
Catherine D. NobesAlan Hall

Abstract

Cell movement is essential during embryogenesis to establish tissue patterns and to drive morphogenetic pathways and in the adult for tissue repair and to direct cells to sites of infection. Animal cells move by crawling and the driving force is derived primarily from the coordinated assembly and disassembly of actin filaments. The small GTPases, Rho, Rac, and Cdc42, regulate the organization of actin filaments and we have analyzed their contributions to the movement of primary embryo fibroblasts in an in vitro wound healing assay. Rac is essential for the protrusion of lamellipodia and for forward movement. Cdc42 is required to maintain cell polarity, which includes the localization of lamellipodial activity to the leading edge and the reorientation of the Golgi apparatus in the direction of movement. Rho is required to maintain cell adhesion during movement, but stress fibers and focal adhesions are not required. Finally, Ras regulates focal adhesion and stress fiber turnover and this is essential for cell movement. We conclude that the signal transduction pathways controlled by the four small GTPases, Rho, Rac, Cdc42, and Ras, cooperate to promote cell movement.

Cellular Mechanics and InteractionsHippo pathway signaling and YAP/TAZWnt/β-catenin signaling in development and cancerLamellipodiumCell biologyStress fiberCDC42GTPaseCell polarityFocal adhesionBiologyActinCell migration

MeSH terms

AnimalsCell AdhesionCell MovementCells, CulturedFibroblastsProteinsSignal TransductionCell Polarityras ProteinsCell Cycle ProteinsGTP-Binding ProteinsGTP PhosphohydrolasesGTPase-Activating Proteinsras GTPase-Activating Proteinscdc42 GTP-Binding Protein
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