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A Failsafe for Sensing Chromatid Tension in Mitosis with the Histone H3 Tail in Saccharomyces cerevisiae

机译:酿酒酵母中的组蛋白H3尾巴用于感测有丝分裂中的染色单体张力的故障保险

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摘要

Mitotic fidelity is ensured by achieving biorientation on all paired chromosomes. The key signal for proper chromosome alignment is the tension between sister chromatids created by opposing poleward force from the spindles. In the budding yeast, the tension-sensing function requires that the Shugoshin protein, Shugoshin 1, be recruited to the centromeres and the neighboring pericentric regions. Concerted actions integrating proteins at centromeres and pericentromeres create highly specific Shugoshin 1 domains on mitotic chromosomes. We have previously reported that an important regulatory region on histone H3, termed the tension-sensing motif (TSM), is responsible for retaining Shugoshin 1 at pericentromeres. The TSM is negatively regulated by the acetyltransferase , but the underlying mechanism was elusive. In this work, we provide evidence that, when the TSM function is impaired, the histone H3 tail adopts a role that complements the damaged TSM to ensure faithful mitosis. This novel function of the H3 tail is controlled by , which targets selective lysine residues. Mutations to K14 and K23 ameliorate the mitotic defects resulting from TSM mutations. The restoration of faithful segregation is accompanied by regaining Shugoshin 1 access to the pericentric regions. Our data reveal a novel pathway for mitotic Shugoshin 1 recruitment and further reinforce the active role played by chromatins during their segregation in mitosis.
机译:通过在所有成对染色体上实现生物定向来确保有丝分裂保真度。正确进行染色体对齐的关键信号是姐妹纺锤体之间的张力,这些纺锤体是由纺锤相反的极向力产生的。在萌芽的酵母中,张力感应功能要求将Shugoshin蛋白Shugoshin 1募集到着丝粒和邻近的周围中心区域。整合着丝粒和着丝粒的蛋白质的协同作用在有丝分裂染色体上产生了高度特异性的Shugoshin 1结构域。先前我们已经报道过,组蛋白H3上的一个重要调控区域,称为张力传感基序(TSM),负责将Shugoshin 1保留在着丝粒周围。 TSM受乙酰转移酶的负调控,但其潜在机制尚不清楚。在这项工作中,我们提供了证据,当TSM功能受损时,组蛋白H3尾巴起着补充受损TSM的作用,以确保忠实的有丝分裂。 H3尾巴的这种新功能由靶向选择性赖氨酸残基的来控制。 K14和K23的突变改善了TSM突变导致的有丝分裂缺陷。忠实的种族隔离的恢复伴随着Shugoshin 1再次进入外围地区。我们的数据揭示了有丝分裂Shugoshin 1募集的新途径,并进一步增强了染色质在有丝分裂中的分离过程中发挥的积极作用。

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