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Chromosomal attachments set length and microtubule number in the Saccharomyces cerevisiae mitotic spindle

机译:酿酒酵母有丝分裂纺锤体中的染色体附件设置长度和微管数量

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摘要

The length of the mitotic spindle varies among different cell types. A simple model for spindle length regulation requires balancing two forces: pulling, due to micro­tubules that attach to the chromosomes at their kinetochores, and pushing, due to interactions between microtubules that emanate from opposite spindle poles. In the budding yeast Saccharomyces cerevisiae, we show that spindle length scales with kinetochore number, increasing when kinetochores are inactivated and shortening on addition of synthetic or natural kinetochores, showing that kinetochore–microtubule interactions generate an inward force to balance forces that elongate the spindle. Electron microscopy shows that manipulating kinetochore number alters the number of spindle microtubules: adding extra kinetochores increases the number of spindle microtubules, suggesting kinetochore-based regulation of microtubule number.
机译:有丝分裂纺锤体的长度在不同的细胞类型之间变化。一个简单的纺锤长度调节模型需要平衡两个力:拉动(由于微管附着在其动植物的染色体上)和推(由于从相对的纺锤极发出的微管之间的相互作用)。在萌芽的酿酒酵母中,我们显示纺锤长度随动粒数而定,当动粒被灭活时会增加,而在合成或天然动粒的添加时会缩短,这表明动粒与微管的相互作用会产生向内的力来平衡拉长纺锤的力。电子显微镜显示,控制动粒数可改变纺锤体微管的数量:添加额外的动粒体可增加纺锤体微管的数量,这表明基于动线粒的微管数量调控。

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