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核有丝分裂器蛋白是有丝分裂纺锤体极处不溶性基质的一个组成部分。

NuMA is a component of an insoluble matrix at mitotic spindle poles.

作者信息

Dionne M A, Howard L, Compton D A

机构信息

Department of Biochemistry, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.

出版信息

Cell Motil Cytoskeleton. 1999;42(3):189-203. doi: 10.1002/(SICI)1097-0169(1999)42:3<189::AID-CM3>3.0.CO;2-X.

Abstract

NuMA associates with microtubule motors during mitosis to perform an essential role in organizing microtubule minus ends at spindle poles. Using immunogold electron microscopy, we show that NuMA is a component of an electron-dense material concentrated at both mitotic spindle poles in PtK1 cells and the core of microtubule asters formed through a centrosome-independent mechanism in cell-free mitotic extracts. This NuMA-containing material is distinct from the peri-centriolar material and forms a matrix that appears to anchor microtubule ends at the spindle pole. In stark contrast to conventional microtubule-associated proteins whose solubility is directly dependent on microtubules, we find that once NuMA is incorporated into this matrix either in vivo or in vitro, it becomes insoluble and this insolubility is no longer dependent on microtubules. NuMA is essential for the formation of this insoluble matrix at the core of mitotic asters assembled in vitro because the matrix is absent from mitotic asters assembled in a cell-free mitotic extract that is specifically depleted of NuMA. These physical properties are consistent with NuMA being a component of the putative mitotic spindle matrix in vertebrate cells. Furthermore, given that NuMA is essential for spindle pole organization in vertebrate systems, it is likely that this insoluble matrix plays an essential structural function in anchoring and/or stabilizing microtubule minus ends at spindle poles in mitotic cells.

摘要

在有丝分裂期间,核有丝分裂器蛋白(NuMA)与微管马达蛋白相关联,在纺锤体极组织微管负端方面发挥重要作用。通过免疫金电子显微镜技术,我们发现NuMA是一种电子致密物质的组成成分,该物质集中在PtK1细胞的有丝分裂纺锤体两极以及在无细胞有丝分裂提取物中通过一种不依赖中心体的机制形成的微管星状体的核心部位。这种含有NuMA的物质不同于中心粒周围物质,形成一种基质,似乎在纺锤体极锚定微管末端。与溶解性直接依赖于微管的传统微管相关蛋白形成鲜明对比的是我们发现,一旦NuMA在体内或体外被整合到这种基质中,它就变得不溶,并且这种不溶性不再依赖于微管。NuMA对于体外组装的有丝分裂星状体核心部位这种不溶性基质的形成至关重要,因为在特意去除了NuMA的无细胞有丝分裂提取物中组装的有丝分裂星状体中不存在这种基质。这些物理特性与NuMA作为脊椎动物细胞中假定的有丝分裂纺锤体基质的一个组成成分相一致。此外,鉴于NuMA在脊椎动物系统中对于纺锤体极的组织至关重要,这种不溶性基质很可能在有丝分裂细胞中纺锤体极锚定和/或稳定微管负端方面发挥重要的结构功能。

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