Literature DB >> 18287519

GEF-H1 couples nocodazole-induced microtubule disassembly to cell contractility via RhoA.

Yuan-Chen Chang1, Perihan Nalbant, Jörg Birkenfeld, Zee-Fen Chang, Gary M Bokoch.   

Abstract

The RhoA GTPase plays a vital role in assembly of contractile actin-myosin filaments (stress fibers) and of associated focal adhesion complexes of adherent monolayer cells in culture. GEF-H1 is a microtubule-associated guanine nucleotide exchange factor that activates RhoA upon release from microtubules. The overexpression of GEF-H1 deficient in microtubule binding or treatment of HeLa cells with nocodazole to induce microtubule depolymerization results in Rho-dependent actin stress fiber formation and contractile cell morphology. However, whether GEF-H1 is required and sufficient to mediate nocodazole-induced contractility remains unclear. We establish here that siRNA-mediated depletion of GEF-H1 in HeLa cells prevents nocodazole-induced cell contraction. Furthermore, the nocodazole-induced activation of RhoA and Rho-associated kinase (ROCK) that mediates phosphorylation of myosin regulatory light chain (MLC) is impaired in GEF-H1-depleted cells. Conversely, RhoA activation and contractility are rescued by reintroduction of siRNA-resistant GEF-H1. Our studies reveal a critical role for a GEF-H1/RhoA/ROCK/MLC signaling pathway in mediating nocodazole-induced cell contractility.

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Year:  2008        PMID: 18287519      PMCID: PMC2366883          DOI: 10.1091/mbc.e07-12-1269

Source DB:  PubMed          Journal:  Mol Biol Cell        ISSN: 1059-1524            Impact factor:   4.138


  32 in total

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10.  GEF-H1 modulates localized RhoA activation during cytokinesis under the control of mitotic kinases.

Authors:  Jörg Birkenfeld; Perihan Nalbant; Benjamin P Bohl; Olivier Pertz; Klaus M Hahn; Gary M Bokoch
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7.  Nuclear Mechanics within Intact Cells Is Regulated by Cytoskeletal Network and Internal Nanostructures.

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10.  Oxidative stress contributes to lung injury and barrier dysfunction via microtubule destabilization.

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