Tran Quang C, Gautreau A, Arpin M, Treisman R
Transcription Laboratory, Room 528, Imperial Cancer Research Fund Laboratories, 44 Lincoln's Inn Fields, London WC2A 3PX, UK.
EMBO J. 2000 Sep 1;19(17):4565-76. doi: 10.1093/emboj/19.17.4565.
The small G protein RhoA and its GDP/GTP exchange factors (GEFs) Net and Dbl can transform NIH 3T3 fibroblasts, dependent on the activity of the RhoA effector kinase ROCK. We investigated the role of the cytoskeletal linker protein ezrin in this process. RhoA effector loop mutants which can bind ROCK induce relocalization of ezrin to dorsal actin-containing cell surface protrusions, as do Net and Dbl. Both processes are inhibited by the ROCK inhibitor Y27632, which also inhibits association of ezrin with the cytoskeleton, and phosphorylation of T567, conserved between ezrin and its relatives radixin and moesin. ROCK can phosphorylate the ezrin C-terminus in vitro. The ezrin mutant T567A cannot be relocalized by activated RhoA, Net or Dbl or by ROCK itself, and also inhibits RhoA-mediated contractility and focal adhesion formation. Moreover, ezrin T567A, but not wild-type ezrin, restores contact inhibition to Net- and Dbl-transformed cells, and inhibits the activity of Net and Ras in focus formation assays. These results implicate ROCK-mediated ezrin C-terminal phosphorylation in transformation by RhoGEFs.
小G蛋白RhoA及其GDP/GTP交换因子(GEFs)Net和Dbl可使NIH 3T3成纤维细胞发生转化,这依赖于RhoA效应激酶ROCK的活性。我们研究了细胞骨架连接蛋白埃兹蛋白(ezrin)在此过程中的作用。能够结合ROCK的RhoA效应环突变体可诱导埃兹蛋白重新定位到含肌动蛋白的背侧细胞表面突起,Net和Dbl也有此作用。这两个过程均受ROCK抑制剂Y27632抑制,该抑制剂还可抑制埃兹蛋白与细胞骨架的结合以及埃兹蛋白与其同源物根蛋白(radixin)和膜突蛋白(moesin)之间保守的T567位点的磷酸化。ROCK可在体外使埃兹蛋白的C末端磷酸化。埃兹蛋白突变体T567A不能被激活的RhoA、Net或Dbl或ROCK自身重新定位,并且还可抑制RhoA介导的收缩性和粘着斑形成。此外,埃兹蛋白T567A而非野生型埃兹蛋白可恢复Net和Dbl转化细胞的接触抑制,并在焦点形成试验中抑制Net和Ras的活性。这些结果表明ROCK介导的埃兹蛋白C末端磷酸化在RhoGEFs介导的转化过程中起作用。