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PMID: 18287519 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

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

Molecular biology of the cell ·Vol. 19 ·No. 5 ·2008-05-00 ·Pages 2147-53

Chang YC, Nalbant P, Birkenfeld J, Chang ZF, Bokoch GM

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.

MeSH Terms
Cell Differentiation/drug effects Cell Physiological Phenomena/drug effects Guanine Nucleotide Exchange Factors/deficiency,metabolism HeLa Cells Humans Microtubules/drug effects,enzymology Myosin Light Chains/metabolism Nocodazole/pharmacology RNA, Small Interfering/metabolism Rho Guanine Nucleotide Exchange Factors Signal Transduction/drug effects Tetradecanoylphorbol Acetate/pharmacology rhoA GTP-Binding Protein/metabolism
Chemicals
ARHGEF2 protein, human Guanine Nucleotide Exchange Factors Myosin Light Chains RNA, Small Interfering Rho Guanine Nucleotide Exchange Factors rhoA GTP-Binding Protein Tetradecanoylphorbol Acetate Nocodazole
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Chang Yuan-Chen
Departments of Immunology and Cell Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.
Nalbant Perihan
Birkenfeld Jörg
Chang Zee-Fen
Bokoch Gary M
References (32)
32 references, click to expand
  1. Rocks: multifunctional kinases in cell behaviour.
    Nat Rev Mol Cell Biol. 2003 Jun;4(6):446-56 PMID: 12778124
  2. Mechanical behavior in living cells consistent with the tensegrity model.
    Proc Natl Acad Sci U S A. 2001 Jul 3;98(14):7765-70 PMID: 11438729
  3. Phosphorylation and activation of myosin by Rho-associated kinase (Rho-kinase).
    J Biol Chem. 1996 Aug 23;271(34):20246-9 PMID: 8702756
  4. Regulation of myosin phosphatase by Rho and Rho-associated kinase (Rho-kinase)
    Science. 1996 Jul 12;273(5272):245-8 PMID: 8662509
  5. Dbl family guanine nucleotide exchange factors.
    Trends Biochem Sci. 2001 Dec;26(12):724-32 PMID: 11738596
  6. Fibroblast contractility and actin organization are stimulated by microtubule inhibitors.
    J Cell Sci. 1989 Jun;93 ( Pt 2):255-66 PMID: 2482296
  7. Contraction due to microtubule disruption is associated with increased phosphorylation of myosin regulatory light chain.
    Proc Natl Acad Sci U S A. 1995 Oct 24;92(22):10252-6 PMID: 7479762
  8. Microtubule disassembly increases endothelial cell barrier dysfunction: role of MLC phosphorylation.
    Am J Physiol Lung Cell Mol Physiol. 2001 Sep;281(3):L565-74 PMID: 11504682
  9. Rho/Rho-kinase mediated signaling in physiology and pathophysiology.
    J Mol Med (Berl). 2002 Oct;80(10):629-38 PMID: 12395147
  10. Cytoskeletal regulation of pulmonary vascular permeability.
    J Appl Physiol (1985). 2001 Oct;91(4):1487-500 PMID: 11568129
  11. Contribution of guanine exchange factor H1 in phorbol ester-induced apoptosis.
    Cell Death Differ. 2006 Dec;13(12):2023-32 PMID: 16601754
  12. GEF-H1 is involved in agonist-induced human pulmonary endothelial barrier dysfunction.
    Am J Physiol Lung Cell Mol Physiol. 2006 Mar;290(3):L540-8 PMID: 16257999
  13. Binding of GEF-H1 to the tight junction-associated adaptor cingulin results in inhibition of Rho signaling and G1/S phase transition.
    Dev Cell. 2005 May;8(5):777-86 PMID: 15866167
  14. Conserved microtubule-actin interactions in cell movement and morphogenesis.
    Nat Cell Biol. 2003 Jul;5(7):599-609 PMID: 12833063
  15. Microtubule disassembly induces cytoskeletal remodeling and lung vascular barrier dysfunction: role of Rho-dependent mechanisms.
    J Cell Physiol. 2004 Oct;201(1):55-70 PMID: 15281089
  16. Formation of actin stress fibers and focal adhesions enhanced by Rho-kinase.
    Science. 1997 Feb 28;275(5304):1308-11 PMID: 9036856
  17. Characterization of p190RhoGEF, a RhoA-specific guanine nucleotide exchange factor that interacts with microtubules.
    J Biol Chem. 2001 Feb 16;276(7):4948-56 PMID: 11058585
  18. Cloning and characterization of GEF-H1, a microtubule-associated guanine nucleotide exchange factor for Rac and Rho GTPases.
    J Biol Chem. 1998 Dec 25;273(52):34954-60 PMID: 9857026
  19. GEF-H1 modulates localized RhoA activation during cytokinesis under the control of mitotic kinases.
    Dev Cell. 2007 May;12(5):699-712 PMID: 17488622
  20. Focal adhesions: transmembrane junctions between the extracellular matrix and the cytoskeleton.
    Annu Rev Cell Biol. 1988;4:487-525 PMID: 3058164
  21. Balanced mechanical forces and microtubule contribution to fibroblast contraction.
    J Cell Physiol. 1996 Dec;169(3):439-47 PMID: 8952693
  22. Nucleotide exchange factor GEF-H1 mediates cross-talk between microtubules and the actin cytoskeleton.
    Nat Cell Biol. 2002 Apr;4(4):294-301 PMID: 11912491
  23. Novel role of microtubules in thrombin-induced endothelial barrier dysfunction.
    FASEB J. 2004 Dec;18(15):1879-90 PMID: 15576491
  24. Rho GTPases and the actin cytoskeleton.
    Science. 1998 Jan 23;279(5350):509-14 PMID: 9438836
  25. RhoA signaling in phorbol ester-induced apoptosis.
    J Biomed Sci. 2006 Mar;13(2):173-80 PMID: 16496227
  26. Cell migration: integrating signals from front to back.
    Science. 2003 Dec 5;302(5651):1704-9 PMID: 14657486
  27. Site selection for the cleavage furrow at cytokinesis.
    Trends Cell Biol. 2005 Mar;15(3):156-62 PMID: 15752979
  28. PAK4 mediates morphological changes through the regulation of GEF-H1.
    J Cell Sci. 2005 May 1;118(Pt 9):1861-72 PMID: 15827085
  29. Regulation of the small GTP-binding protein Rho by cell adhesion and the cytoskeleton.
    EMBO J. 1999 Feb 1;18(3):578-85 PMID: 9927417
  30. Microtubule disruption induces the formation of actin stress fibers and focal adhesions in cultured cells: possible involvement of the rho signal cascade.
    Cell Struct Funct. 1996 Oct;21(5):317-26 PMID: 9118237
  31. Enteropathogenic Escherichia coli activates the RhoA signaling pathway via the stimulation of GEF-H1.
    EMBO J. 2004 Sep 1;23(17):3570-82 PMID: 15318166
  32. p21-activated kinase 1 phosphorylates and regulates 14-3-3 binding to GEF-H1, a microtubule-localized Rho exchange factor.
    J Biol Chem. 2004 Apr 30;279(18):18392-400 PMID: 14970201
Article Info
Journal
Molecular biology of the cell
Abbr.
Mol Biol Cell
ISSN
1939-4586
Published
2008-05-00
Epub
2008-00-20
Pages
2147-53
Language
English
Region
United States
NLM ID
9201390
PMCID
PMC2366883
Subset
IM
Grants
NIGMS NIH HHS · R01 GM044428 · United States
NIGMS NIH HHS · GM44428 · United States
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