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Temporal and compartment-specific signals coordinate mitotic exit with spindle position

机译:时间和隔室特异性信号协调有丝分裂出口与纺锤体位置

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The spatiotemporal control of mitotic exit is crucial for faithful chromosome segregation during mitosis. In budding yeast, the mitotic exit network (MEN) drives cells out of mitosis, whereas the spindle position checkpoint (SPOC) blocks MEN activity when the anaphase spindle is mispositioned. How the SPOC operates at a molecular level remains unclear. Here, we report novel insights into how mitotic signalling pathways orchestrate chromosome segregation in time and space. We establish that the key function of the central SPOC kinase, Kin4, is to counterbalance MEN activation by the cdc fourteen early anaphase release (FEAR) network in the mother cell compartment. Remarkably, Kin4 becomes dispensable for SPOC function in the absence of FEAR. Cells lacking both FEAR and Kin4 show that FEAR contributes to mitotic exit through regulation of the SPOC component Bfa1 and the MEN kinase Cdc15. Furthermore, we uncover controls that specifically promote mitotic exit in the daughter cell compartment.
机译:有丝分裂出口的时空控制对于有丝分裂期间忠实的染色体分离至关重要。在发芽的酵母中,有丝分裂出口网络(MEN)使细胞脱离有丝分裂,而当后期纺锤体放错位置时,纺锤体位置检查点(SPOC)会阻止MEN的活性。 SPOC如何在分子水平上运行尚不清楚。在这里,我们报告有关有丝分裂信号通路如何协调时空的染色体分离的新见解。我们确定中央SPOC激酶Kin4的关键功能是通过母细胞区室中的cdc 14早期后期释放(FEAR)网络抵消MEN的激活。值得注意的是,在没有FEAR的情况下,Kin4对于SPOC功能而言是必不可少的。缺乏FEAR和Kin4的细胞表明FEAR通过调节SPOC成分Bfa1和MEN激酶Cdc15促成有丝分裂退出。此外,我们发现了专门促进子细胞室中有丝分裂退出的控件。

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