Abstract

RhoA plays a pivotal role in regulating cell shape and movement. Protein kinase A (PKA) inhibits RhoA signaling and thereby induces a characteristic morphological change, cell rounding. This has been considered to result from cAMP-induced phosphorylation of RhoA at Ser-188, which induces a stable RhoA-GTP-RhoGDIα complex and sequesters RhoA to the cytosol. However, few groups have shown RhoA phosphorylation in intact cells. Here we show that phosphorylation of RhoGDIα but not RhoA plays an essential role in the PKA-induced inhibition of RhoA signaling and in the morphological changes using cardiac fibroblasts. The knockdown of RhoGDIα by siRNA blocks cAMP-induced cell rounding, which is recovered by RhoGDIα-WT expression but not when a RhoGDIα-S174A mutant is expressed. PKA phosphorylates RhoGDIα at Ser-174 and the phosphorylation of RhoGDIα is likely to induce the formation of a active RhoA-RhoGDIα complex. Our present results thus reveal a principal molecular mechanism underlying G(s)/cAMP-induced cross-talk with G(q)/G(13)/RhoA signaling.

Highlights

  • CAMP-induced phosphorylation of RhoA has been considered to inhibit RhoA signaling, causing cell rounding

  • Protein kinase A (PKA) phosphorylates RhoGDI␣ at Ser-174 and the phosphorylation of RhoGDI␣ is likely to induce the formation of a active RhoA-RhoGDI␣ complex

  • Our findings reveal that the cAMP-induced phosphorylation of RhoGDI␣ at Ser-174 is likely to play a key role in the cAMP-induced sequestration of RhoA in the cytosol and in the consequent cell rounding of cardiac fibroblasts

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Summary

Introduction

CAMP-induced phosphorylation of RhoA has been considered to inhibit RhoA signaling, causing cell rounding. We show that phosphorylation of RhoGDI␣ but not RhoA plays an essential role in the PKA-induced inhibition of RhoA signaling and in the morphological changes using cardiac fibroblasts.

Results
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