Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
J Biol Chem. 2013 Apr 19;288(16):11325-33. doi: 10.1074/jbc.M113.450056. Epub 2013 Mar 14.
The monomeric Rho GTPases are essential for cellular regulation including cell architecture and movement. A direct mechanism for hormonal regulation of the RhoA-type GTPases is their modulation by the G12 and G13 proteins via RH (RGS homology) containing RhoGEFs. In addition to the interaction of the G protein α subunits with the RH domain, activated RhoA also binds to the pleckstrin homology (PH) domain of PDZRhoGEF. The latter interaction is now extended to all seven members of the homologous Lbc family of RhoGEFs which includes the RH-RhoGEFs. This is evinced by direct measurements of binding or through effects on selected signaling pathways in cells. Overexpression of these PH domains alone can block RhoA-dependent signaling in cells to various extents. Whereas activated RhoA does not modulate the intrinsic activity of the RhoGEFs, activated RhoA associated with phospholipid vesicles can facilitate increased activity of soluble RhoGEFs on vesicle-delimited substrate (RhoA-GDP). This demonstrates feasibility of the hypothesis that binding of activated RhoA to the PH domains acts as a positive feedback mechanism. This is supported by cellular studies in which mutation of this binding site on PH strongly attenuates the stimulation of RhoA observed by overexpression of five of the RhoGEF DH-PH domains. This mutation is even more dramatic in the context of full-length p115RhoGEF. The utilization of this mechanism by multiple RhoGEFs suggests that this regulatory paradigm may be a common feature in the broader family of RhoGEFs.
单体 Rho GTPases 对于细胞调节至关重要,包括细胞结构和运动。激素对 RhoA 型 GTPases 的直接调节机制是通过含有 RH(RGS 同源性)的 G12 和 G13 蛋白对其进行调制的 RhoGEFs。除了 G 蛋白 α 亚基与 RH 结构域的相互作用外,激活的 RhoA 还与 PDZRhoGEF 的pleckstrin 同源(PH)结构域结合。这种相互作用现在已经扩展到同源 Lbc 家族的所有七个 RhoGEFs 成员,包括 RH-RhoGEFs。这一点通过对结合的直接测量或通过对细胞中选定信号通路的影响来证明。单独过表达这些 PH 结构域可以在不同程度上阻断细胞中 RhoA 依赖性信号转导。虽然激活的 RhoA 不会调节 RhoGEFs 的固有活性,但与磷脂囊泡结合的激活的 RhoA 可以促进可溶性 RhoGEFs 在囊泡限定的底物(RhoA-GDP)上的活性增加。这证明了激活的 RhoA 与 PH 结构域结合作为正反馈机制的假设是可行的。这一点得到了细胞研究的支持,在该研究中,该 PH 结构域上该结合位点的突变强烈减弱了通过过表达五个 RhoGEF DH-PH 结构域观察到的 RhoA 刺激。在全长 p115RhoGEF 的背景下,这种突变更为显著。这种机制被多种 RhoGEFs 利用,表明这种调节范式可能是 RhoGEFs 更广泛家族的共同特征。