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参与纺锤体组装和染色体分离的马达蛋白。

Motors involved in spindle assembly and chromosome segregation.

作者信息

Vernos I, Karsenti E

机构信息

Cell Biology Programme, Heidelberg, Germany.

出版信息

Curr Opin Cell Biol. 1996 Feb;8(1):4-9. doi: 10.1016/s0955-0674(96)80041-x.

Abstract

During the past two years, major advances have been made in our understanding of the role of motor proteins in chromosome-microtubule interactions in the spindle. The discovery of kinesin-like proteins (KLPs) associated with chromosome arms has shed some light on the mechanism of chromosome congression and the establishment of spindle bipolarity. Recent results also indicate that kinetochore KLPs may tether the ends of growing and shrinking microtubules to kinetochores during chromosome movements. Finally, new data indicate that phosphorylation of KLPs may be one of the mechanisms by which they are targeted to specific spindle domains.

摘要

在过去两年中,我们对运动蛋白在纺锤体中染色体与微管相互作用里所起作用的理解取得了重大进展。与染色体臂相关的类驱动蛋白(KLPs)的发现,为染色体汇聚机制及纺锤体双极性的建立提供了一些线索。近期研究结果还表明,动粒KLPs可能在染色体移动过程中将生长和收缩的微管末端拴系在动粒上。最后,新数据表明,KLPs的磷酸化可能是它们被靶向特定纺锤体区域的机制之一。

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