首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Dynamic bonds and polar ejection force distribution explain kinetochore oscillations in PtK1 cells
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Dynamic bonds and polar ejection force distribution explain kinetochore oscillations in PtK1 cells

机译:动态键和极性射出力分布解释了PtK1细胞中的线粒体振荡

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摘要

Duplicated mitotic chromosomes aligned at the metaphase plate maintain dynamic attachments to spindle microtubules via their kinetochores, and multiple motor and nonmotor proteins cooperate to regulate their behavior. Depending on the system, sister chromatids may display either of two distinct behaviors, namely (1) the presence or (2) the absence of oscillations about the metaphase plate. Significantly, in PtK1 cells, in which chromosome behavior appears to be dependent on the position along the metaphase plate, both types of behavior are observed within the same spindle, but how and why these distinct behaviors are manifested is unclear. Here, we developed a new quantitative model to describe metaphase chromosome dynamics via kinetochore–microtubule interactions mediated by nonmotor viscoelastic linkages. Our model reproduces all the key features of metaphase sister kinetochore dynamics in PtK1 cells and suggests that differences in the distribution of polar ejection forces at the periphery and in the middle of PtK1 cell spindles underlie the observed dichotomy of chromosome behavior.
机译:在中期板对齐的重复的有丝分裂染色体通过其动粒体与纺锤体微管保持动态连接,并且多种运动蛋白和非运动蛋白协同调节其行为。取决于系统,姐妹染色单体可以显示两种不同的行为之一,即(1)中期板的存在或(2)振荡的不存在。值得注意的是,在PtK1细胞中,其染色体行为似乎取决于沿中期板的位置,在同一纺锤体内观察到两种类型的行为,但是这些不同行为的表现方式和原因尚不清楚。在这里,我们开发了一个新的定量模型,通过非运动粘弹性链接介导的动粒-微管相互作用来描述中期染色体动力学。我们的模型重现了PtK1细胞中期姐妹动粒动力学的所有关键特征,并表明在观察到的染色体行为二分法的基础上,PtK1细胞纺锤体外围和中部的极地弹力分布不同。

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