Disruption of cytoskeletal integrity impairs Gi-mediated signaling due to displacement of Gi proteins

Author:

Bloch Wilhelm1,Fan Yun2,Han Ji1,Xue Sheng2,Schöneberg Torsten3,Ji Guanju2,Lu Zhong J.2,Walther Michael1,Fässler Reinhard4,Hescheler Jürgen2,Addicks Klaus1,Fleischmann Bernd K.2

Affiliation:

1. Institute of Anatomy I, University of Cologne, Germany

2. Institute of Neurophysiology, University of Cologne, Germany

3. Institute of Pharmacology, Free University of Berlin, Germany

4. Department of Experimental Pathology, University of Lund, Sweden

Abstract

β1 integrins play a crucial role as cytoskeletal anchorage proteins. In this study, the coupling of the cytoskeleton and intracellular signaling pathways was investigated in β1 integrin deficient (−/−) embryonic stem cells. Muscarinic inhibition of the L-type Ca2+ current (ICa) and activation of the acetylcholine-activated K+ current (IK,ACh) was found to be absent in β1 integrin−/− cardiomyocytes. Conversely, β adrenoceptor-mediated modulation of ICa was unaffected by the absence of β1 integrins. This defect in muscarinic signaling was due to defective G protein coupling. This was supported by deconvolution microscopy, which demonstrated that Gi exhibited an atypical subcellular distribution in the β1 integrin−/− cardiomyocytes. A critical role of the cytoskeleton was further demonstrated using cytochalasin D, which displaced Gi and impaired muscarinic signaling. We conclude that cytoskeletal integrity is required for correct localization and function of Gi-associated signaling microdomains.

Publisher

Rockefeller University Press

Subject

Cell Biology

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