首页> 美国卫生研究院文献>Molecular and Cellular Biology >The Fission Yeast Crb2/Chk1 Pathway Coordinates the DNA Damage and Spindle Checkpoint in Response to Replication Stress Induced by Topoisomerase I Inhibitor
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The Fission Yeast Crb2/Chk1 Pathway Coordinates the DNA Damage and Spindle Checkpoint in Response to Replication Stress Induced by Topoisomerase I Inhibitor

机译:裂变酵母Crb2 / Chk1途径协调DNA损伤和纺锤体检查站响应拓扑异构酶I抑制剂诱导的复制压力。

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摘要

Living organisms experience constant threats that challenge their genome stability. The DNA damage checkpoint pathway coordinates cell cycle progression with DNA repair when DNA is damaged, thus ensuring faithful transmission of the genome. The spindle assembly checkpoint inhibits chromosome segregation until all chromosomes are properly attached to the spindle, ensuring accurate partition of the genetic material. Both the DNA damage and spindle checkpoint pathways participate in genome integrity. However, no clear connection between these two pathways has been described. Here, we analyze mutants in the BRCT domains of fission yeast Crb2, which mediates Chk1 activation, and provide evidence for a novel function of the Chk1 pathway. When the Crb2 mutants experience damaged replication forks upon inhibition of the religation activity of topoisomerase I, the Chk1 DNA damage pathway induces sustained activation of the spindle checkpoint, which in turn delays metaphase-to-anaphase transition in a Mad2-dependent fashion. This new pathway enhances cell survival and genome stability when cells undergo replicative stress in the absence of a proficient G2/M DNA damage checkpoint.
机译:活生物体不断面临威胁其基因组稳定性的威胁。 DNA损伤检查点途径可在DNA受到损伤时通过DNA修复来协调细胞周期进程,从而确保基因组的忠实传播。纺锤体装配检查点会抑制染色体分离,直到所有染色体都正确附着到纺锤体上为止,从而确保了遗传物质的精确分配。 DNA损伤和纺锤体检查点途径均参与基因组完整性。但是,这两个途径之间没有明确的联系被描述。在这里,我们分析裂变酵母Crb2的BRCT域中的突变体,该突变体介导Chk1激活,并为Chk1途径的新功能提供证据。当Crb2突变体在抑制拓扑异构酶I的连接活性时经历了复制叉的破坏时,Chk1 DNA破坏途径会诱导纺锤体检查点持续活化,进而以Mad2依赖性方式延迟中期到后期的转变。当细胞在缺乏熟练的G2 / M DNA损伤检查点的情况下承受复制压力时,这种新途径可增强细胞存活率和基因组稳定性。

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