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Mechanism controlling perpendicular alignment of the spindle to the axis of cell division in fission yeast

机译:控制裂变酵母中纺锤体与细胞分裂轴垂直对齐的机制

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摘要

In animal cells, the mitotic spindle is aligned perpendicular to the axis of cell division. This ensures that sister chromatids are separated to opposite sides of the cytokinetic actomyosin ring (CAR). We show that, in fission yeast, spindle rotation is dependent on the interaction of astral microtubules with the cortical actin cytoskeleton. Interaction initially occurs with a region surrounding the nucleus, which we term the astral microtubule interaction zone (AMIZ). Simultaneous contact of astral microtubules from both poles with the AMIZ directs spindle rotation and this requires both actin and two type V myosins, Myo51 and Myo52. Astral microtubules from one pole only then contact the CAR, which is located at the centre of the AMIZ. We demonstrate that the anillin homologue Mid1, which dictates correct placement of the CAR, is necessary to stabilise the mitotic spindle perpendicular to the axis of cell division. Finally, we show that the position of the mitotic spindle is monitored by a checkpoint that regulates the timing of sister chromatid separation.
机译:在动物细胞中,有丝分裂纺锤体垂直于细胞分裂轴排列。这样可确保姐妹染色单体分离到细胞动力学放线菌素环(CAR)的相对两侧。我们表明,在裂变酵母中,纺锤体旋转取决于星形微管与皮质肌动蛋白细胞骨架的相互作用。相互作用最初发生在细胞核周围的区域,我们称其为星状微管相互作用区(AMIZ)。来自两个极的星状微管与AMIZ同时接触可引导纺锤体旋转,这需要肌动蛋白和两个V型肌球蛋白Myo51和Myo52。只有一根极的星状微管才与位于AMIZ中心的CAR接触。我们证明,指示正确放置CAR的Anillin同源物Mid1是稳定垂直于细胞分裂轴的有丝分裂纺锤体所必需的。最后,我们表明有丝分裂纺锤体的位置由一个检查点监控,该检查点调节姐妹染色单体分离的时间。

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