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Hop2 and Sae3 Are Required for Dmc1-Mediated Double-Strand Break Repair via Homolog Bias during Meiosis

机译:在减数分裂过程中通过同源偏置进行Dmc1介导的双链断裂修复需要Hop2和Sae3。

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摘要

During meiosis, exchange of DNA segments occurs between paired homologous chromosomes in order to produce recombinant chromosomes, helping to increase genetic diversity within a species. This genetic exchange process is tightly controlled by the eukaryotic RecA homologs Rad51 and Dmc1, which are involved in strand exchange of meiotic recombination, with Rad51 participating specifically in mitotic recombination. Meiotic recombination requires an interaction between homologous chromosomes to repair programmed double-strand breaks (DSBs). In this study, we investigated the budding yeast meiosis-specific proteins Hop2 and Sae3, which function in the Dmc1-dependent pathway. This pathway mediates the homology searching and strand invasion processes. Mek1 kinase participates in switching meiotic recombination from sister bias to homolog bias after DSB formation. In the absence of Hop2 and Sae3, DSBs were produced normally, but showed defects in the DSB-to-single-end invasion transition mediated by Dmc1 and auxiliary factors, and mutant strains failed to complete proper chromosome segregation. However, in the absence of Mek1 kinase activity, Rad51-dependent recombination progressed via sister bias in the hop2Δ or sae3Δ mutants, even in the presence of Dmc1. Thus, Hop2 and Sae3 actively modulate Dmc1-dependent recombination, effectively progressing homolog bias, a process requiring Mek1 kinase activation.
机译:在减数分裂过程中,成对的同源染色体之间发生DNA片段交换,以产生重组染色体,从而有助于增加物种内的遗传多样性。此基因交换过程受到真核RecA同源物Rad51和Dmc1的严格控制,它们参与减数分裂重组的链交换,而Rad51专门参与有丝分裂重组。减数分裂重组需要同源染色体之间的相互作用来修复程序化的双链断裂(DSB)。在这项研究中,我们调查了萌芽期的酵母减数分裂特异性蛋白Hop2和Sae3,它们在Dmc1依赖性途径中起作用。该途径介导同源性搜索和链入侵过程。 Mek1激酶参与DSB形成后,将减数分裂重组从姐妹偏向转换为同源偏向。在没有Hop2和Sae3的情况下,DSB正常产生,但在Dmc1和辅助因子介导的DSB到单端入侵转变中显示缺陷,并且突变菌株无法完成正确的染色体分离。但是,在没有Mek1激酶活性的情况下,即使在Dmc1的存在下,hop2Δ或sae3Δ突变体中也会通过姐妹偏向进行Rad51依赖的重组。因此,Hop2和Sae3主动调节Dmc1依赖的重组,有效地促进同源偏倚,这一过程需要Mek1激酶激活。

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