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Gradual Implementation of the Meiotic Recombination Program via Checkpoint Pathways Controlled by Global DSB Levels

机译:通过全球DSB级别控制的检查点途径逐步实施减数分裂重组计划

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摘要

During meiosis, Spo11-induced double-strand breaks (DSBs) are processed into crossovers, ensuring segregation of homologous chromosomes (homologs). Meiotic DSB processing entails 5' end resection and preferred strand exchange with the homolog rather than the sister chromatid (homolog bias). In many organisms, DSBs appear gradually along the genome. Here we report unexpected effects of global DSB levels on local recombination events. Early-occurring, low-abundance "scout'' DSBs lack homolog bias. Their resection and interhomolog processing are controlled by the conserved checkpoint proteins Tel1(ATM) kinase and Pch2(TRIP13) ATPase. Processing pathways controlled by Mec1(ATR) kinase take over these functions only above a distinct DSB threshold, resulting in progressive strengthening of the homolog bias. We conclude that Tel1(ATM)/Pch2 and Mec1(ATR) DNA damage response pathways are sequentially activated during wild-type meiosis because of their distinct sensitivities to global DSB levels. Moreover, relative DSB order controls the DSB repair pathway choice and, ultimately, recombination outcome.
机译:在减数分裂过程中,Spo11诱导的双链断裂(DSB)被加工为交叉,确保同源染色体(同源物)分离。减数分裂DSB处理需要进行5'末端切除,并优选与同系物而不是姐妹染色单体(同源性偏倚)进行链交换。在许多生物中,DSB沿着基因组逐渐出现。在这里,我们报告了全局DSB级别对本地重组事件的意外影响。早期出现的低丰度“侦察兵” DSB缺乏同源性偏见,其切除和同源处理受保守的关卡蛋白Tel1(ATM)激酶和Pch2(TRIP13)ATPase的控制,由Mec1(ATR)激酶控制的处理途径这些功能仅在一个明显的DSB阈值以上,从而导致同源偏倚的逐步增强我们得出结论,Tel1(ATM)/ Pch2和Mec1(ATR)DNA损伤反应途径在野生型减数分裂过程中由于其不同的敏感性而被依次激活此外,相对DSB顺序控制着DSB修复途径的选择以及最终的重组结果。

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