Michaely P A, Mineo C, Ying Y S, Anderson R G
Department of Cell Biology and Neuroscience, University of Texas Southwestern Medical Center, Dallas, Texas 75235-9039, USA.
J Biol Chem. 1999 Jul 23;274(30):21430-6. doi: 10.1074/jbc.274.30.21430.
Rac1 and RhoA regulate membrane ruffling and stress fiber formation. Both molecules appear to exert their control from the plasma membrane. In fibroblasts stimulated with platelet-derived growth factor or lysophosphatidic acid, the reorganization of the cytoskeleton begins at specific sites on the cell surface. We now report that endogenous Rac1 and RhoA also have a polarized distribution at the cell surface. Cell fractionation and immunogold labeling show that in quiescent fibroblasts both of these molecules are concentrated in caveolae, which are plasma membrane domains that are associated with actin-rich regions of the cell. Treatment of these cells with platelet-derived growth factor stimulated the recruitment of additional Rac1 and RhoA to caveolae fractions, while lysophosphatidic acid only caused the recruitment of RhoA. We could reconstitute the recruitment of RhoA using either whole cell lysates or purified caveolae. Surprisingly, pretreatment of the lysates with exoenzyme C3 shifted both resident and recruited RhoA from caveolae to noncaveolae membranes. The shift in location was not caused by inactivation of the RhoA effector domain. Moreover, chimeric proteins containing the C-terminal consensus site for Rac1 and RhoA prenylation were constitutively targeted to caveolae fractions. These results suggest that the polarized distribution of Rho family proteins at the cell surface involves an initial targeting of the protein to caveolae and a mechanism for retaining it at this site.
Rac1和RhoA调节膜皱襞和应力纤维的形成。这两种分子似乎都从质膜发挥其控制作用。在用血小板衍生生长因子或溶血磷脂酸刺激的成纤维细胞中,细胞骨架的重组始于细胞表面的特定部位。我们现在报告,内源性Rac1和RhoA在细胞表面也有极化分布。细胞分级分离和免疫金标记显示,在静止的成纤维细胞中,这两种分子都集中在小窝中,小窝是与细胞富含肌动蛋白区域相关的质膜结构域。用血小板衍生生长因子处理这些细胞会刺激更多的Rac1和RhoA募集到小窝组分中,而溶血磷脂酸只会导致RhoA的募集。我们可以使用全细胞裂解物或纯化的小窝来重建RhoA的募集。令人惊讶的是,用外切酶C3预处理裂解物会使驻留的和募集的RhoA从小窝转移到非小窝膜。位置的改变不是由RhoA效应结构域的失活引起的。此外,含有Rac1和RhoA异戊二烯化C端共有位点的嵌合蛋白会持续靶向小窝组分。这些结果表明,Rho家族蛋白在细胞表面的极化分布涉及该蛋白最初靶向小窝以及将其保留在该位点的机制。