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The Arabidopsis BLAP75/Rmi1 Homologue Plays Crucial Roles in Meiotic Double-Strand Break Repair

机译:拟南芥BLAP75 / Rmi1同源物在减数分裂双链断裂修复中起关键作用

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摘要

In human cells and in Saccharomyces cerevisiae, BLAP75/Rmi1 acts together with BLM/Sgs1 and TopoIIIα/Top3 to maintain genome stability by limiting crossover (CO) formation in favour of NCO events, probably through the dissolution of double Holliday junction intermediates (dHJ). So far, very limited data is available on the involvement of these complexes in meiotic DNA repair. In this paper, we present the first meiotic study of a member of the BLAP75 family through characterisation of the Arabidopsis thaliana homologue. In A. thaliana blap75 mutants, meiotic recombination is initiated, and recombination progresses until the formation of bivalent-like structures, even in the absence of ZMM proteins. However, chromosome fragmentation can be detected as soon as metaphase I and is drastic at anaphase I, while no second meiotic division is observed. Using genetic and imunolocalisation studies, we showed that these defects reflect a role of A. thaliana BLAP75 in meiotic double-strand break (DSB) repair—that it acts after the invasion step mediated by RAD51 and associated proteins and that it is necessary to repair meiotic DSBs onto sister chromatids as well as onto the homologous chromosome. In conclusion, our results show for the first time that BLAP75/Rmi1 is a key protein of the meiotic homologous recombination machinery. In A. thaliana, we found that this protein is dispensable for homologous chromosome recognition and synapsis but necessary for the repair of meiotic DSBs. Furthermore, in the absence of BLAP75, bivalent formation can happen even in the absence of ZMM proteins, showing that in blap75 mutants, recombination intermediates exist that are stable enough to form bivalent structures, even when ZMM are absent.
机译:在人类细胞和酿酒酵母中,BLAP75 / Rmi1与BLM / Sgs1和TopoIIIα/ Top3共同发挥作用,可通过限制交叉(CO)的形成来支持NCO事件来维持基因组稳定性,这可能是通过双重霍利迪连接中间体(dHJ)的溶解来实现的。 。到目前为止,关于这些复合物参与减数分裂DNA修复的数据非常有限。在本文中,我们通过拟南芥(Arabidopsis thaliana)同源物的鉴定,首次对BLAP75家族成员进行了减数分裂研究。在拟南芥blap75突变体中,减数分裂重组开始,并且重组进行直到形成二价样结构,即使没有ZMM蛋白也是如此。然而,染色体分裂可以在中期I时立即检测到,并且在后期I时急剧,而没有观察到第二次减数分裂。使用遗传和免疫定位研究,我们发现这些缺陷反映了拟南芥BLAP75在减数分裂双链断裂(DSB)修复中的作用-它在RAD51和相关蛋白介导的侵袭步骤后起作用,并且有必要进行修复减数分裂DSB到姐妹染色单体以及同源染色体上。总之,我们的结果首次显示BLAP75 / Rmi1是减数分裂同源重组机制的关键蛋白。在拟南芥中,我们发现该蛋白对于同源染色体的识别和突触是不可缺少的,但是对于减数分裂DSB的修复是必需的。此外,在不存在BLAP75的情况下,即使在不存在ZMM蛋白的情况下也可能发生二价形成,这表明在blap75突变体中,即使没有ZMM,也存在足够稳定以形成二价结构的重组中间体。

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