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      The role of Rho in G protein-coupled receptor signal transduction.

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          Abstract

          Low molecular weight G proteins of the Rho subfamily are regulators of actin cytoskeletal organization. In contrast to the heterotrimeric G proteins, the small GTPases are not directly activated through ligand binding to G protein-coupled receptors (GPCRs). However, a subset of GPCRs, including those for lysophosphatidic acid and thrombin, induce stress fibers, focal adhesions, and cell rounding through Rho-dependent pathways. C3 exoenzyme has been a useful tool for demonstrating Rho involvement in these and other responses, including Ca2+ sensitization of smooth muscle contraction, cell migration, transformation, and serum response element-mediated gene expression. Most of the GPCRs that induce Rho-dependent responses can activate Gq, but this is not a sufficient signal. Recent data demonstrate that G alpha 12/13 can induce Rho-dependent responses. Furthermore, G alpha 12/13 can bind and activate Rho-specific guanine nucleotide exchange factors, providing a mechanism by which GPCRs that couple to G alpha 12/13 could activate Rho and its downstream responses.

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          Author and article information

          Journal
          Annu Rev Pharmacol Toxicol
          Annual review of pharmacology and toxicology
          Annual Reviews
          0362-1642
          0362-1642
          2000
          : 40
          Affiliations
          [1 ] Department of Pharmacology, University of California, San Diego 92093-0636, USA. vtansah@ucsd.edu
          Article
          10.1146/annurev.pharmtox.40.1.459
          10836144
          98a25ba8-1da3-4d69-b66d-f406bdb895b5
          History

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