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非洲爪蟾卵提取物中的纺锤体组装:中心体与微管自组装的各自作用

Spindle assembly in Xenopus egg extracts: respective roles of centrosomes and microtubule self-organization.

作者信息

Heald R, Tournebize R, Habermann A, Karsenti E, Hyman A

机构信息

Cell Biology Program, European Molecular Biology Laboratory, 69117 Heidelberg, Germany.

出版信息

J Cell Biol. 1997 Aug 11;138(3):615-28. doi: 10.1083/jcb.138.3.615.

Abstract

In Xenopus egg extracts, spindles assembled around sperm nuclei contain a centrosome at each pole, while those assembled around chromatin beads do not. Poles can also form in the absence of chromatin, after addition of a microtubule stabilizing agent to extracts. Using this system, we have asked (a) how are spindle poles formed, and (b) how does the nucleation and organization of microtubules by centrosomes influence spindle assembly? We have found that poles are morphologically similar regardless of their origin. In all cases, microtubule organization into poles requires minus end-directed translocation of microtubules by cytoplasmic dynein, which tethers centrosomes to spindle poles. However, in the absence of pole formation, microtubules are still sorted into an antiparallel array around mitotic chromatin. Therefore, other activities in addition to dynein must contribute to the polarized orientation of microtubules in spindles. When centrosomes are present, they provide dominant sites for pole formation. Thus, in Xenopus egg extracts, centrosomes are not necessarily required for spindle assembly but can regulate the organization of microtubules into a bipolar array.

摘要

在非洲爪蟾卵提取物中,围绕精核组装的纺锤体在每个极都含有一个中心体,而围绕染色质珠组装的纺锤体则没有。在向提取物中添加微管稳定剂后,即使没有染色质,极也能形成。利用这个系统,我们提出了两个问题:(a)纺锤体极是如何形成的?(b)中心体对微管的成核和组织如何影响纺锤体组装?我们发现,无论其起源如何,极在形态上都是相似的。在所有情况下,微管组织形成极需要细胞质动力蛋白将微管的负端定向转运,从而将中心体与纺锤体极相连。然而,在没有极形成的情况下,微管仍会在有丝分裂染色质周围排列成反平行阵列。因此,除了动力蛋白之外,其他活动也必定有助于纺锤体中微管的极化定向。当存在中心体时,它们为极的形成提供主要位点。因此,在非洲爪蟾卵提取物中,纺锤体组装不一定需要中心体,但中心体可以调节微管组织成两极阵列。

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