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Optogenetic control of cellular forces and mechanotransduction.

Nat Commun.. 2017-02; 
Valon L, MarÍn-LlauradÓ A, Wyatt T, Charras G, Trepat X. Institute for Bioengineering of Catalonia, Barcelona 08028, Spain.
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Abstract

Contractile forces are the end effectors of cell migration, division, morphogenesis, wound healing and cancer invasion. Here we report optogenetic tools to upregulate and downregulate such forces with high spatiotemporal accuracy. The technology relies on controlling the subcellular activation of RhoA using the CRY2/CIBN light-gated dimerizer system. We fused the catalytic domain (DHPH domain) of the RhoA activator ARHGEF11 to CRY2-mCherry (optoGEF-RhoA) and engineered its binding partner CIBN to bind either to the plasma membrane or to the mitochondrial membrane. Translocation of optoGEF-RhoA to the plasma membrane causes a rapid and local increase in cellular traction, intercellular tension and tissue compact... More

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