Dujardin D, Wacker U I, Moreau A, Schroer T A, Rickard J E, De Mey J R
Institut Jacques Monod, Department of Supramolecular and Cellular Biology, CNRS-University of Paris VI & VII, 75251 Paris Cedex 05, France.
J Cell Biol. 1998 May 18;141(4):849-62. doi: 10.1083/jcb.141.4.849.
CLIPs (cytoplasmic linker proteins) are a class of proteins believed to mediate the initial, static interaction of organelles with microtubules. CLIP-170, the CLIP best characterized to date, is required for in vitro binding of endocytic transport vesicles to microtubules. We report here that CLIP-170 transiently associates with prometaphase chromosome kinetochores and codistributes with dynein and dynactin at kinetochores, but not polar regions, during mitosis. Like dynein and dynactin, a fraction of the total CLIP-170 pool can be detected on kinetochores of unattached chromosomes but not on those that have become aligned at the metaphase plate. The COOH-terminal domain of CLIP-170, when transiently overexpressed, localizes to kinetochores and causes endogenous full-length CLIP-170 to be lost from the kinetochores, resulting in a delay in prometaphase. Overexpression of the dynactin subunit, dynamitin, strongly reduces the amount of CLIP-170 at kinetochores suggesting that CLIP-170 targeting may involve the dynein/dynactin complex. Thus, CLIP-170 may be a linker for cargo in mitosis as well as interphase. However, dynein and dynactin staining at kinetochores are unaffected by this treatment and further overexpression studies indicate that neither CLIP-170 nor dynein and dynactin are required for the formation of kinetochore fibers. Nevertheless, these results strongly suggest that CLIP-170 contributes in some way to kinetochore function in vivo.
细胞质连接蛋白(CLIPs)是一类被认为介导细胞器与微管初始静态相互作用的蛋白质。CLIP-170是迄今为止特征最明确的CLIP,它是胞吞运输小泡在体外与微管结合所必需的。我们在此报告,CLIP-170在有丝分裂期间与前中期染色体动粒短暂结合,并与动力蛋白和动力蛋白激活蛋白在动粒而非极区共分布。与动力蛋白和动力蛋白激活蛋白一样,在未附着染色体的动粒上可检测到一部分总CLIP-170,但在已排列在中期板上的染色体动粒上则检测不到。当短暂过表达时,CLIP-170的COOH末端结构域定位于动粒,并导致内源性全长CLIP-170从动粒上消失,从而导致前中期延迟。动力蛋白激活蛋白亚基动力素的过表达强烈减少了动粒上CLIP-170的量,这表明CLIP-170的靶向可能涉及动力蛋白/动力蛋白激活蛋白复合物。因此,CLIP-170可能是有丝分裂以及间期货物的连接蛋白。然而,动粒上的动力蛋白和动力蛋白激活蛋白染色不受此处理的影响,进一步的过表达研究表明,动粒纤维的形成既不需要CLIP-170,也不需要动力蛋白和动力蛋白激活蛋白。尽管如此,这些结果强烈表明CLIP-170在体内以某种方式对动粒功能有贡献。