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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The C-Terminal Half of Saccharomyces cerevisiae Mad1p Mediates Spindle Checkpoint Function, Chromosome Transmission Fidelity and CEN Association
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The C-Terminal Half of Saccharomyces cerevisiae Mad1p Mediates Spindle Checkpoint Function, Chromosome Transmission Fidelity and CEN Association

机译:啤酒酵母Mad1p的C端一半介导主轴检查点功能,染色体传递保真度和CEN协会

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The evolutionarily conserved spindle checkpoint is a key mechanism ensuring high-fidelity chromosome transmission. The checkpoint monitors attachment between kinetochores and mitotic spindles and the tension between sister kinetochores. In the absence of proper attachment or tension, the spindle checkpoint mediates cell cycle arrest prior to anaphase. Saccharomyces cerevisiae Mad1p is required for the spindle checkpoint and for chromosome transmission fidelity. Moreover, Mad1p associates with the nuclear pore complex (NPC) and is enriched at kinetochores upon checkpoint activation. Using partial mad1 deletion alleles we determined that the C-terminal half of Mad1p is necessary and sufficient for checkpoint activation in response to microtubule depolymerizing agents, high-fidelity transmission of a reporter chromosome fragment, and in vivo association with centromeres, but not for robust NPC association. Thus, spindle checkpoint activation and chromosome transmission fidelity correlate and these Mad1p functions likely involve kinetochore association but not robust NPC association. These studies are the basis for elucidating the role of protein complexes containing Mad1p in the spindle checkpoint pathway and in maintaining genome stability in S. cerevisiae and other systems.
机译:进化上保守的纺锤体检查点是确保高保真染色体传递的关键机制。检查点监视动植物和有丝分裂纺锤体之间的附着以及姐妹动植物之间的张力。在没有适当的附着力或张力的情况下,纺锤体检查点在后期后期会介导细胞周期停滞。酿酒酵母Mad1p是纺锤体检查点和染色体传递保真度所必需的。此外,Mad1p与核孔复合体(NPC)缔合,并在检查站激活时在动植物中富集。使用部分mad1缺失等位基因,我们确定Mad1p的C末端一半对于响应微管解聚剂,报告染色体片段的高保真度传递以及与着丝粒的体内缔合,对于检查点激活是必要且足够的,但对于稳固性不是NPC协会。因此,纺锤体检查点激活和染色体传递保真度相关,并且这些Mad1p功能可能涉及线粒体关联,但不涉及鲁棒的NPC关联。这些研究是阐明含Mad1p的蛋白复合物在纺锤体检查点途径中以及在酿酒酵母和其他系统中维持基因组稳定性的基础。

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