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Disruption of Astral Microtubule Contact with the Cell Cortex Activates a Bub1, Bub3, and Mad3-dependent Checkpoint in Fission Yeast

机译:星状微管与细胞皮层接触的中断激活裂变酵母中的Bub1,Bub3和Mad3依赖的检查点。

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In animal and yeast cells, the mitotic spindle is aligned perpendicularly to the axis of cell division. This ensures that sister chromatids are separated to opposite sides of the cytokinetic actomyosin ring. In fission yeast, spindle rotation is dependent upon the interaction of astral microtubules with the cortical actin cytoskeleton. In this article, we show that addition of Latrunculin A, which prevents spindle rotation, delays the separation of sister chromatids and anaphase promoting complex-mediated destruction of spindle-associated Securin and Cyclin B. Moreover, we find that whereas sister kinetochore pairs normally congress to the spindle midzone before anaphase onset, this congression is disrupted when astral microtubule contact with the actin cytoskeleton is disturbed. By analyzing the timing of kinetochore separation, we find that this anaphase delay requires the Bub3, Mad3, and Bub1 but not the Mad1 or Mad2 spindle assembly checkpoint proteins. In agreement with this, we find that Bub1 remains associated with kinetochores when spindles are mispositioned. These data indicate that, in fission yeast, astral microtubule contact with the medial cell cortex is monitored by a subset of spindle assembly checkpoint proteins. We propose that this checkpoint ensures spindles are properly oriented before anaphase takes place.
机译:在动物和酵母细胞中,有丝分裂纺锤体垂直于细胞分裂轴排列。这确保了姐妹染色单体分离到细胞动力学放线菌素环的相对侧。在裂变酵母中,纺锤体旋转取决于星状微管与皮质肌动蛋白细胞骨架的相互作用。在本文中,我们证明了添加Latrunculin A可以防止纺锤体旋转,延迟姐妹染色单体的分离,并后期促进复杂介导的与纺锤体相关的Securin和Cyclin B的破坏。在后期发病前到达纺锤体中部,当星形微管与肌动蛋白细胞骨架的接触受到干扰时,这种转化被破坏。通过分析动线虫分离的时间,我们发现这个后期延迟需要Bub3,Mad3和Bub1,但不需要Mad1或Mad2纺锤体装配检查点蛋白。与此相符,我们发现当主轴放错位置时,Bub1仍然与动植物相关。这些数据表明,在裂变酵母中,星状微管与内侧细胞皮层的接触是由纺锤体组装检查点蛋白的一个子集来监控的。我们建议该检查点确保在后期发生之前主轴正确定向。

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