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Anaphase inactivation of the spindle checkpoint.

机译:主轴检查点的后期停用。

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The spindle checkpoint delays cell cycle progression until microtubules attach each pair of sister chromosomes to opposite poles of the mitotic spindle. Following sister chromatid separation, however, the checkpoint ignores chromosomes whose kinetochores are attached to only one spindle pole, a state that activates the checkpoint prior to metaphase. We demonstrate that, in budding yeast, mutual inhibition between the anaphase-promoting complex (APC) and Mps1, an essential component of the checkpoint, leads to sustained inactivation of the spindle checkpoint. Mps1 protein abundance decreases in anaphase, and Mps1 is a target of the APC. Furthermore, expression of Mps1 in anaphase, or repression of the APC in anaphase, reactivates the spindle checkpoint. This APC-Mps1 feedback circuit allows cells to irreversibly inactivate the checkpoint during anaphase.
机译:纺锤体检查点延迟细胞周期进程,直到微管将每对姐妹染色体连接到有丝分裂纺锤体的相对极上。但是,在姐妹染色单体分离之后,检查点将忽略其动粒仅附着于一个纺锤极的染色体,该状态在中期之前激活了检查点。我们证明,在发芽的酵母中,后期促进复合物(APC)和Mps1(检查点的必要组成部分)之间的相互抑制会导致纺锤体检查点持续失活。 Mps1蛋白丰度在后期降低,Mps1是APC的目标。此外,后期表达Mps1或后期抑制APC会重新激活主轴检查点。该APC-Mps1反馈电路允许细胞在后期期间不可逆地使检查点失活。

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