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微管稳定作用触发Kif18A/驱动蛋白8在正端的积累。

Microtubule stabilization triggers the plus-end accumulation of Kif18A/kinesin-8.

作者信息

Masuda Natsuko, Shimodaira Tetsuhiro, Shiu Shu-Jen, Tokai-Nishizumi Noriko, Yamamoto Tadashi, Ohsugi Miho

机构信息

Division of Oncology, Department of Cancer Biology, Institute of Medical Science, The University of Tokyo, Japan.

出版信息

Cell Struct Funct. 2011;36(2):261-7. doi: 10.1247/csf.11032. Epub 2011 Nov 19.

Abstract

The precise control of spindle microtubule (MT) dynamics is essential for chromosome capture and alignment. Kif18A/kinesin-8, an essential regulator of kinetochore MT dynamics, accumulates at its plus-ends in metaphase but not prometaphase cells. The underlying mechanism of time-dependent and kinetochore MT-specific plus-end accumulation of Kif18A is unknown. Here, we examined the factors required for the MT plus-end accumulation of Kif18A. In Eg5 inhibitor-treated cells, Kif18A localized along the MTs in the monopolar spindle and rarely accumulated at their plus-ends, indicating that MT-kinetochore association was not sufficient to induce Kif18A accumulation. In contrast, taxol treatment triggered the rapid MT plus-end accumulation of Kif18A regardless of kinetochore association. Furthermore, Aurora B inhibitor-induced stabilization of the plus-ends of kinetochore MTs promoted the plus-end accumulation of Kif18A. In the absence of Kif18A, treatment with taxol but not Eg5 inhibitor causes highly elongated mitotic MTs, suggesting the importance of plus-end accumulation for the MT length-controlling activity of Kif18A. Taken together, we propose that there is a mutual regulation of kinetochore MT plus-end dynamics and Kif18A accumulation, which may contribute to the highly regulated and ordered changes in kinetochore MT dynamics during chromosome congression and oscillation.

摘要

纺锤体微管(MT)动力学的精确控制对于染色体捕获和排列至关重要。Kif18A/驱动蛋白8是动粒MT动力学的重要调节因子,在中期而非前中期细胞中在其正端积累。Kif18A随时间变化且在动粒MT特异性正端积累的潜在机制尚不清楚。在这里,我们研究了Kif18A在MT正端积累所需的因素。在Eg5抑制剂处理的细胞中,Kif18A沿单极纺锤体中的MT定位,很少在其正端积累,这表明MT与动粒的结合不足以诱导Kif18A积累。相反,紫杉醇处理触发了Kif18A在MT正端的快速积累,而与动粒结合无关。此外,极光激酶B抑制剂诱导的动粒MT正端稳定促进了Kif18A的正端积累。在没有Kif18A的情况下,紫杉醇处理而非Eg5抑制剂处理会导致有丝分裂MT高度延长,这表明正端积累对于Kif18A的MT长度控制活性很重要。综上所述,我们提出动粒MT正端动力学和Kif18A积累之间存在相互调节,这可能有助于在染色体汇聚和振荡过程中动粒MT动力学的高度调节和有序变化。

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