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A role for NuSAP in linking microtubules to mitotic chromosomes

机译:NuSAP在将微管连接到有丝分裂染色体上的作用

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摘要

The spindle apparatus is a microtubule (MT)-based machinery that attaches to and segregates the chromosomes during mitosis and meiosis. Self-organization of the spindle around chromatin involves the assembly of MTs, their attachment to the chromosomes, and their organization into a bipolar array. One regulator of spindle self-organization is RanGTP. RanGTP is generated at chromatin and activates a set of soluble, Ran-regulated spindle factors such as TPX2, NuMA, and NuSAP [1]. How the spindle factors direct and attach MTs to the chromosomes are key open questions. Nucleolar and Spindle-Associated Protein (NuSAP) was recently identified as an essential MT-stabilizing and bundling protein that is enriched at the central part of the spindle [2, 3]. Here, we show by biochemical reconstitution that NuSAP efficiently adsorbs to isolated chromatin and DNA and that it can directly produce and retain high concentrations of MTs in the immediate vicinity of chromatin or DNA. Moreover, our data reveal that NuSAP-chromatin interaction is subject to Ran regulation and can be suppressed by Importin alpha (Imp alpha) and Imp7. We propose that the presence of MT binding agents such as NuSAP, which can be directly immobilized on chromatin, are critical for targeting MT production to vertebrate chromosomes during spindle self-organization.
机译:纺锤体设备是基于微管(MT)的机器,在有丝分裂和减数分裂过程中会附着并隔离染色体。染色质周围纺锤体的自组织涉及MT的组装,它们与染色体的附着以及它们的组织成双极阵列。主轴自组织的一种调节器是RanGTP。 RanGTP在染色质上生成,并激活一组可溶的,Ran调节的纺锤因子,例如TPX2,NuMA和NuSAP [1]。纺锤体因子如何引导MT附着在染色体上是关键的开放性问题。核仁和纺锤体相关蛋白(NuSAP)最近被鉴定为必需的MT稳定化和捆绑蛋白,富含在纺锤体的中心[2,3]。在这里,我们通过生化重构显示,NuSAP有效吸附到分离的染色质和DNA上,并且可以直接在染色质或DNA的附近直接产生并保留高浓度的MT。此外,我们的数据显示,NuSAP-染色质相互作用受Ran调控,可以被Importin alpha(Imp alpha)和Imp7抑制。我们提出,MT结合剂(例如NuSAP)可以直接固定在染色质上,对于在纺锤体自组织过程中将MT生产靶向脊椎动物染色体至关重要。

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