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首页> 外文期刊>Journal of cell biology >Cell cycle-dependent, in vitro assembly of microtubules onto pericentriolar material of HeLa cells.
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Cell cycle-dependent, in vitro assembly of microtubules onto pericentriolar material of HeLa cells.

机译:细胞周期依赖的微管体外组装到HeLa细胞的中心小体材料上。

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A centriolar complex comprising a pair of centrioles and a cloud of pericentriolar materials is located at the point of covergence of the microtubules of the mitotic apparatus. The in vitro assembly of microtubules was observed onto these complexes in the 1,400 g supernatant fraction of colcemid-blocked, mitotic HeLa cells lysed into solutions containing tubulin and Triton X-100. Dark-field microscopy provided a convenient means by which this process could be visualized directly. When this 1,400 g supernate was incubated at 30 degrees C and centrifuged into a discontinuous sucrose gradient, a band containing centriolar complexes and assembled microtubles was obtained at 50-60% sucrose interface. Ultrastructual analysis indicated that the majority of the microtubules assembled predominantly from the pericentriolar material but also onto the centrioles. When cells were synchronized by a double thymide block, the assembly of microtubules onto centriolar complexes was observed only in lysates of mitotic cells; no assembly was seen in lysed material of interphase cells. Microtubule assembly occured onto centriolar complexes in solutions of either 100,000 g brain supernate, 2 X cycled tubulin, or purified tubulin dimers. This study demonstrates that the pericentriolar material becomes competent as a microtubule-organizing center (MTOC) at the time of mitosis. With use of the techniques described, a method for the isolation of centriolar complexes may be developed.
机译:包括一对中心粒和中心粒周围物质云的中心粒复合体位于有丝分裂装置的微管的覆盖点。在裂解了含微管蛋白和Triton X-100的溶液中的1,400 g秋水仙素封闭的有丝分裂HeLa细胞上清液中,观察到微管的体外组装在这些复合物上。暗场显微镜提供了一种方便的方法,可以通过该方法直接可视化此过程。当将这1,400 g上清液在30摄氏度下孵育并离心成不连续的蔗糖梯度时,会在50-60%的蔗糖界面上获得一条含有中心状复合物和已组装的微管的条带。超微结构分析表明,大多数微管主要由中心小周材料组装而成,也可组装到中心小体上。当细胞通过双胸腺嘧啶阻断被同步化时,仅在有丝分裂细胞的裂解物中观察到微管在中心粒复合体上的组装。在相间细胞的裂解物中未观察到组装。微管组装发生在100,000 g大脑上清液,2 X循环微管蛋白或纯化的微管蛋白二聚体溶液中的中心粒复合物上。这项研究表明,在有丝分裂时,中心小周材料可以胜任微管组织中心(MTOC)。利用所描述的技术,可以开发出分离中心粒复合物的方法。

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