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Formation of Spindle Poles by Dynein/Dynactin-Dependent Transport of Numa

机译:动力蛋白依赖于动力蛋白/动力蛋白的转运形成纺锤极

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摘要

NuMA is a large nuclear protein whose relocation to the spindle poles is required for bipolar mitotic spindle assembly. We show here that this process depends on directed NuMA transport toward microtubule minus ends powered by cytoplasmic dynein and its activator dynactin. Upon nuclear envelope breakdown, large cytoplasmic aggregates of green fluorescent protein (GFP)-tagged NuMA stream poleward along spindle fibers in association with the actin-related protein 1 (Arp1) protein of the dynactin complex and cytoplasmic dynein. Immunoprecipitations and gel filtration demonstrate the assembly of a reversible, mitosis-spe-cific complex of NuMA with dynein and dynactin. NuMA transport is required for spindle pole assembly and maintenance, since disruption of the dynactin complex (by increasing the amount of the dynamitin subunit) or dynein function (with an antibody) strongly inhibits NuMA translocation and accumulation and disrupts spindle pole assembly.
机译:NuMA是一种大型核蛋白,其双极有丝分裂纺锤体组装需要重定位到纺锤体极。我们在这里显示,此过程取决于定向NuMA朝由细胞质动力蛋白及其激活物动力蛋白驱动的微管负端运输。核被膜破裂后,带有绿色荧光蛋白(GFP)标签的NuMA的大型胞质聚集体会沿着纺锤丝向两极流动,并与肌动蛋白复合物和肌动蛋白相关的肌动蛋白相关蛋白1(Arp1)蛋白和胞质达因蛋白结合。免疫沉淀和凝胶过滤表明,NuMA与动力蛋白和动力蛋白是可逆的,有丝分裂特异性的复合物。 NuMA运输是纺锤体极轴组装和维护所必需的,因为动力蛋白复合物的破坏(通过增加dynamitin亚基的量)或动力蛋白功能(带有抗体)会强烈抑制NuMA的转运和积累,并破坏纺锤极体的组装。

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