Gao Chun Y, Stepp Mary Ann, Fariss Robert, Zelenka Peggy
National Eye Institute, NIH, Building 7, 7 Memorial Drive MSC 0704, Bethesda, MD 20892, USA.
J Cell Sci. 2004 Aug 15;117(Pt 18):4089-98. doi: 10.1242/jcs.01271. Epub 2004 Jul 27.
Recent studies have shown that Cdk5, a member of the cyclin-dependent-kinase family, regulates adhesion and migration in a mouse corneal epithelial cell line. Here, we extend these findings to corneal wound healing in vivo and examine the mechanism linking Cdk5 to cytoskeletal reorganization and migration. Cdk5 was overexpressed in the corneal epithelium of transgenic mice under control of the ALDH3 promoter. Elevated Cdk5 expression retarded corneal debridement wound closure in these animals and suppressed remodeling of the actin cytoskeleton. Conversely, the Cdk5 inhibitor, olomoucine, accelerated debridement wound healing in organ cultured eyes of normal mice, caused migrating cells to separate from the epithelial cell sheet, and increased the level of activated Src(pY416) along the wound edge. To explore the relationship between Cdk5 and Src in greater detail, we examined scratch-wounded cultures of corneal epithelial cells. Src was activated in cells along the wound edge and blocking this activation with the Src kinase inhibitor, PP1, inhibited wound closure by 85%. Inhibiting Cdk5 activity with olomoucine or a dominant negative construct, Cdk5T33, increased the concentration of Src(pY416), shifted its subcellular localization to the cell periphery and enhanced wound closure. Cdk5(pY15), an activated form of Cdk5, also appeared along the wound edge. Inhibiting Src activity with PP1 blocked the appearance of Cdk5(pY15), suggesting that Cdk5 phosphorylation is Src dependent. Cdk5 and Src co-immunoprecipitated from scratch-wounded cultures, demonstrating that both kinases are part of an intracellular protein complex. These findings indicate that Cdk5 exerts its effects on cell migration during corneal epithelial wound healing by regulating the activation and localization of Src.
最近的研究表明,细胞周期蛋白依赖性激酶家族成员Cdk5在小鼠角膜上皮细胞系中调节黏附与迁移。在此,我们将这些发现扩展至体内角膜伤口愈合过程,并研究将Cdk5与细胞骨架重组及迁移联系起来的机制。在ALDH3启动子的控制下,Cdk5在转基因小鼠的角膜上皮中过表达。Cdk5表达升高会延缓这些动物的角膜清创伤口闭合,并抑制肌动蛋白细胞骨架的重塑。相反,Cdk5抑制剂olomoucine可加速正常小鼠器官培养眼中的清创伤口愈合,使迁移细胞与上皮细胞层分离,并增加伤口边缘活化Src(pY416)的水平。为了更详细地探究Cdk5与Src之间的关系,我们检测了角膜上皮细胞的划痕损伤培养物。Src在伤口边缘的细胞中被激活,用Src激酶抑制剂PP1阻断这种激活可使伤口闭合减少85%。用olomoucine或显性负性构建体Cdk5T33抑制Cdk5活性,会增加Src(pY416)的浓度,将其亚细胞定位转移至细胞周边,并增强伤口闭合。活化形式的Cdk5即Cdk5(pY15)也出现在伤口边缘。用PP1抑制Src活性可阻断Cdk5(pY15)的出现,表明Cdk5磷酸化是Src依赖性的。Cdk5和Src从划痕损伤培养物中共免疫沉淀,表明这两种激酶都是细胞内蛋白复合物的一部分。这些发现表明,Cdk5在角膜上皮伤口愈合过程中通过调节Src的激活和定位对细胞迁移发挥作用。