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首页> 外文期刊>Developmental cell >The kinesin-8 motor Kif18A suppresses kinetochore movements to control mitotic chromosome alignment
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The kinesin-8 motor Kif18A suppresses kinetochore movements to control mitotic chromosome alignment

机译:驱动蛋白8电机Kif18A抑制线粒体运动以控制有丝分裂染色体的排列

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摘要

During vertebrate cell division, chromosomes oscillate with periods of smooth motion interrupted by abrupt reversals in direction. These oscillations must be spatially constrained in order to align and segregate chromosomes with high fidelity, but the molecular mechanism for this activity is uncertain. We report here that the human kinesin-8 Kif18A has a primary role in the control of chromosome oscillations. Kif18A accumulates as a gradient on kinetochore microtubules in a manner dependent on its motor activity. Quantitative analyses of kinetochore movements reveal that Kif18A reduces the amplitude of preanaphase oscillations and slows poleward movement during anaphase. Thus, the microtubule-depolymerizing kinesin Kif18A has the unexpected function of suppressing chromosome movements. Based on these findings, we propose a molecular model in which Kif18A regulates kinetochore microtubule dynamics to control mitotic chromosome positioning.
机译:在脊椎动物细胞分裂过程中,染色体以平稳的运动周期振荡,并被突然的方向反转所中断。这些振荡必须在空间上受到限制,以便以高保真度对齐和隔离染色体,但是这种活动的分子机制尚不确定。我们在这里报告,人类驱动蛋白8 Kif18A在控制染色体振荡中起主要作用。 Kif18A依赖于其运动活动,以一定的方式在动粒微管上以梯度形式积累。线粒体运动的定量分析表明,Kif18A降低了后期阶段振荡的幅度,并减缓了后期阶段的极向运动。因此,微管解聚驱动蛋白Kif18A具有抑制染色体运动的出乎意料的功能。基于这些发现,我们提出了一个分子模型,其中Kif18A调节线粒体微管动力学,以控制有丝分裂染色体的定位。

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