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Updated: Jun 12, 2026

RhoC GTPase Activation Assay
Published on: August 22, 2010
Long-range mutual activation establishes Rho and Rac polarity during cell migration
Henry De Belly1,2,3, Andreu F Gallén4, Evelyn Strickland5,6,7
1Cardiovascular Research Institute, University of California, San Francisco, San Francisco, CA, USA. Henry.DeBelly@UTSouthwestern.edu.
None:
In migrating cells, the GTPase Rac organizes a protrusive front, whereas Rho organizes a contractile back. How these GTPases are positioned at opposite poles remains unclear. We leverage optogenetics, mechanical perturbations, and mathematical modelling to reveal a surprising mechanochemical long-range mutual activation between front and back polarity programmes that complements their well-known local mutual inhibition. Rac-based protrusions elevate membrane tension, stimulating an mTORC2-dependent activation of Rho at the opposite side of the cell. Conversely, Rho-mediated contractility induces cortical-flow-based regulation of phosphoinositide signalling that triggers Rac activation distally. We develop a minimal mechanochemical model to explain how long-range facilitation, together with local inhibition, enables robust Rho and Rac partitioning. Our findings demonstrate how the actin cortex and plasma membrane interact as an integrated mechanochemical system for long-range Rac-Rho patterning. This circuit is required for efficient polarity and migration in primary human T cells and is conserved in epithelial cells, highlighting the generality of this mechanism.
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