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Fission Yeast Bub1 Is a Mitotic Centromere Protein Essential for the Spindle Checkpoint and the Preservation of Correct Ploidy through Mitosis

机译:裂变酵母Bub1是有丝分裂中心蛋白,对纺锤体检查站和通过有丝分裂保存正确的倍性至关重要

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摘要

The spindle checkpoint ensures proper chromosome segregation by delaying anaphase until all chromosomes are correctly attached to the mitotic spindle. We investigated the role of the fission yeast bub1 gene in spindle checkpoint function and in unperturbed mitoses. We find that bub1+ is essential for the fission yeast spindle checkpoint response to spindle damage and to defects in centromere function. Activation of the checkpoint results in the recruitment of Bub1 to centromeres and a delay in the completion of mitosis. We show that Bub1 also has a crucial role in normal, unperturbed mitoses. Loss of bub1 function causes chromosomes to lag on the anaphase spindle and an increased frequency of chromosome loss. Such genomic instability is even more dramatic in Δbub1 diploids, leading to massive chromosome missegregation events and loss of the diploid state, demonstrating that bub1+ function is essential to maintain correct ploidy through mitosis. As in larger eukaryotes, Bub1 is recruited to kinetochores during the early stages of mitosis. However, unlike its vertebrate counterpart, a pool of Bub1 remains centromere-associated at metaphase and even until telophase. We discuss the possibility of a role for the Bub1 kinase after the metaphase–anaphase transition.
机译:纺锤体检查点通过延迟后期直到所有染色体正确附着到有丝分裂纺锤体上,确保正确的染色体分离。我们调查了裂变酵母bub1基因在纺锤体检查点功能和不受干扰的有丝分裂中的作用。我们发现,bub1 +对于裂变酵母纺锤体检查站对纺锤体损伤和着丝粒功能缺陷的反应至关重要。检查点的激活导致Bub1募集到着丝粒,并延迟了有丝分裂的完成。我们显示,Bub1在正常的,不受干扰的有丝分裂中也具有至关重要的作用。 bub1功能的丧失导致染色体滞后于后期纺锤体,并且染色体丧失的频率增加。这种基因组不稳定性在Δbub1二倍体中更为显着,导致大量染色体错聚事件和二倍体状态丧失,表明bub1 +功能对于通过有丝分裂维持正确的倍性至关重要。与较大的真核生物一样,Bub1在有丝分裂的早期被募集到动植物中。但是,与脊椎动物不同,Bub1池在中期甚至到末期仍与着丝粒相关。我们讨论了中期到后期转变后Bub1激酶起作用的可能性。

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