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首页> 外文期刊>Journal of cell biology >Microtubule end tethering of a processive kinesin-8 motor Kif18b is required for spindle positioning
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Microtubule end tethering of a processive kinesin-8 motor Kif18b is required for spindle positioning

机译:进行主轴定位需要使用连续式kinesin-8电机Kif18b的微管末端系链

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摘要

Mitotic spindle positioning specifies the plane of cell division during anaphase. Spindle orientation and positioning are therefore critical to ensure symmetric division in mitosis and asymmetric division during development. The control of astral microtubule length plays an essential role in positioning the spindle. In this study, using gene knockout, we show that the kinesin-8 Kif18b controls microtubule length to center the mitotic spindle at metaphase. Using in vitro reconstitution, we reveal that Kif18b is a highly processive plus end–directed motor that uses a C-terminal nonmotor microtubule-binding region to accumulate at growing microtubule plus ends. This region is regulated by phosphorylation to spatially control Kif18b accumulation at plus ends and is essential for Kif18b-dependent spindle positioning and regulation of microtubule length. Finally, we demonstrate that Kif18b shortens microtubules by increasing the catastrophe rate of dynamic microtubules. Overall, our work reveals that Kif18b uses its motile properties to reach microtubule ends, where it regulates astral microtubule length to ensure spindle centering.
机译:有丝分裂纺锤体定位指定后期阶段的细胞分裂平面。因此,主轴的方向和定位对于确保发育过程中对称分裂和不对称分裂至关重要。星形微管长度的控制在主轴定位中起着至关重要的作用。在这项研究中,使用基因敲除,我们表明kinesin-8 Kif18b控制微管的长度,以使有丝分裂纺锤体居中。通过体外重构,我们发现Kif18b是一种高度加工性的,末端导向的马达,它使用C端非马达微管结合区在不断增长的微管和末端积聚。该区域通过磷酸化来调节,以在空间上控制Kif18b在正端的积累,对于依赖Kif18b的纺锤体定位和微管长度调节至关重要。最后,我们证明Kif18b通过增加动态微管的突变率来缩短微管。总体而言,我们的工作表明,Kif18b利用其运动特性达到微管末端,并在此调节星状微管的长度,以确保纺锤体居中。

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