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Kif18B 与 EB1 相互作用,控制有丝分裂期间星体微管的长度。

Kif18B interacts with EB1 and controls astral microtubule length during mitosis.

机构信息

Medical Sciences Program, Indiana University, Bloomington, IN 47405, USA.

出版信息

Mol Biol Cell. 2011 Sep;22(17):3070-80. doi: 10.1091/mbc.E11-04-0363. Epub 2011 Jul 7.

Abstract

Regulation of microtubule (MT) dynamics is essential for proper spindle assembly and organization. Kinesin-8 family members are plus-end-directed motors that modulate plus-end MT dynamics by acting as MT depolymerases or as MT plus-end capping proteins. In this paper, we show that the human kinesin-8 Kif18B functions during mitosis to control astral MT organization. Kif18B is a MT plus-tip-tracking protein that localizes to the nucleus in interphase and is enriched at astral MT plus ends during early mitosis. Knockdown of Kif18B caused spindle defects, resulting in an increased number and length of MTs. A yeast two-hybrid screen identified an interaction of the C-terminal domain of Kif18B with the plus-end MT-binding protein EB1. EB1 knockdown disrupted Kif18B targeting to MT plus ends, indicating that EB1/Kif18B interaction is physiologically important. This interaction is direct, as the far C-terminal end of Kif18B is sufficient for binding to EB1 in vitro. Overexpression of this domain is sufficient for plus-end MT targeting in cells; however, targeting is enhanced by the motor domain, which cooperates with the tail to achieve proper Kif18B localization at MT plus ends. Our results suggest that Kif18B is a new MT dynamics regulatory protein that interacts with EB1 to control astral MT length.

摘要

微管(MT)动力学的调节对于纺锤体的正确组装和组织至关重要。驱动蛋白-8 家族成员是正向指向的马达,通过作为 MT 解聚酶或 MT 正端盖帽蛋白来调节正端 MT 动力学。在本文中,我们表明人类驱动蛋白-8 Kif18B 在有丝分裂期间发挥作用,以控制星体 MT 的组织。Kif18B 是一种 MT 正端追踪蛋白,在间期定位于核内,并在早期有丝分裂期间富集于星体 MT 正端。Kif18B 的敲低导致纺锤体缺陷,导致 MT 的数量和长度增加。酵母双杂交筛选鉴定出 Kif18B 的 C 末端结构域与正端 MT 结合蛋白 EB1 相互作用。EB1 的敲低破坏了 Kif18B 向 MT 正端的靶向,表明 EB1/Kif18B 相互作用在生理上是重要的。这种相互作用是直接的,因为 Kif18B 的远 C 末端足以在体外与 EB1 结合。该结构域的过表达足以在细胞中进行正端 MT 靶向;然而,靶向作用通过马达结构域增强,该结构域与尾部协同作用,以实现 Kif18B 在 MT 正端的正确定位。我们的结果表明,Kif18B 是一种新的 MT 动力学调节蛋白,与 EB1 相互作用以控制星体 MT 的长度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c691/3164455/7e2e0da04301/3070fig1.jpg

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