Research Articles

Rac inhibits thrombin-induced Rho activation: evidence of a Pak-dependent GTPase crosstalk

Authors:

Abstract

The strict spatio-temporal control of Rho GTPases is critical for many cellular functions, including cell motility, contractility, and growth. In this regard, the prototypical Rho family GTPases, Rho, Rac, and Cdc42 regulate the activity of each other by a still poorly understood mechanism. Indeed, we found that constitutively active forms of Rac inhibit stress fiber formation and Rho stimulation by thrombin. Surprisingly, a mutant of Rac that is unable to activate Pak1 failed to inhibit thrombin signaling to Rho. To explore the underlying mechanism, we investigated whether Pak1 could regulate guanine nucleotide exchange factors (GEFs) for Rho. We found that Pak1 associates with P115-RhoGEF but not with PDZ-RhoGEF or LARG, and knock down experiments revealed that P115-RhoGEF plays a major role in signaling from thrombin receptors to Rho in HEK293T cells. Pak1 binds the DH-PH domain of P115-RhoGEF, thus suggesting a mechanism by which Rac stimulation of Pak1 may disrupt receptor-dependent Rho signaling. In agreement, expression of a dominant-negative Pak-Inhibitory Domain potentiated the activation of Rho by thrombin, and prevented the inhibition of Rho by Rac. These findings indicate that Rac interferes with receptordependent Rho stimulation through Pak1, thus providing a mechanism for cross-talk between these two small-GTPases.

  • Year: 2006
  • Volume: 1
  • Page/Article: Art. 8
  • DOI: 10.1186/1750-2187-1-8
  • Submitted on 23 Jun 2006
  • Accepted on 6 Dec 2006
  • Published on 6 Dec 2006
  • Peer Reviewed