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Dynactin-dependent cortical dynein and spherical spindle shape correlate temporally with meiotic spindle rotation in Caenorhabditis elegans

机译:线虫依赖皮质的动力蛋白和球形纺锤形在时间上与秀丽隐杆线虫的减数分裂纺锤体旋转相关。

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摘要

Oocyte meiotic spindles orient with one pole juxtaposed to the cortex to facilitate extrusion of chromosomes into polar bodies. In Caenorhabditis elegans, these acentriolar spindles initially orient parallel to the cortex and then rotate to the perpendicular orientation. To understand the mechanism of spindle rotation, we characterized events that correlated temporally with rotation, including shortening of the spindle in the pole-to pole axis, which resulted in a nearly spherical spindle at rotation. By analyzing large spindles of polyploid C. elegans and a related nematode species, we found that spindle rotation initiated at a defined spherical shape rather than at a defined spindle length. In addition, dynein accumulated on the cortex just before rotation, and microtubules grew from the spindle with plus ends outward during rotation. Dynactin depletion prevented accumulation of dynein on the cortex and prevented spindle rotation independently of effects on spindle shape. These results support a cortical pulling model in which spindle shape might facilitate rotation because a sphere can rotate without deforming the adjacent elastic cytoplasm. We also present evidence that activation of spindle rotation is promoted by dephosphorylation of the basic domain of p150 dynactin.
机译:卵母细胞减数分裂纺锤体定向成一根与皮质并列的极,以促进染色体向极体的挤压。在秀丽隐杆线虫中,这些无尾梭纺锤体最初平行于皮层定向,然后旋转到垂直方向。为了了解主轴旋转的机制,我们对与旋转在时间上相关的事件进行了表征,包括主轴在极对极轴上的缩短,从而导致主轴在旋转时接近球形。通过分析多倍体秀丽隐杆线虫和相关线虫物种的大型纺锤体,我们发现纺锤体旋转以限定的球形而不是限定的纺锤体长度开始。此外,在旋转之前,动力蛋白堆积在皮层上,微管从纺锤体中长出,旋转时正端向外。动力蛋白的消耗可防止动力蛋白在皮质上的积聚,并可防止纺锤旋转,而不受纺锤形状的影响。这些结果支持了皮层牵拉模型,在该模型中,纺锤形可能有助于旋转,因为球体可以旋转而不会使相邻的弹性细胞质变形。我们还提出证据表明,p150 dynactin基本域的去磷酸化促进了主轴旋转的激活。

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