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首页> 外文期刊>Journal of Molecular Biology >Distance from the chromosome end determines the efficiency of double strand break repair in subtelomeres of haploid yeast.
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Distance from the chromosome end determines the efficiency of double strand break repair in subtelomeres of haploid yeast.

机译:距染色体末端的距离决定了单倍体酵母亚端粒中双链断裂修复的效率。

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摘要

Double strand break (DSB) repair plays an important role in chromosome evolution. We have investigated the fate of DSBs as a function of their location along the yeast chromosome XI, in a system where no conventional homologous recombination can occur. We report that the relative frequency of non-homologous endjoining (NHEJ), which is the exclusive mode of DSB repair in the internal chromosomal portion, decreases gradually towards the telomere, keeping the absolute frequency nearly constant, and that other repair mechanisms, which generally involve the loss of the distal chromosomal fragment, appear in subtelomeric regions. Distance of the DSB from chromosome ends plays a critical role in the global frequency of these repair mechanisms. Direct telomere additions are rare, and other events such as break-induced replication, plasmid incorporation, and gene conversion, involve acquisition of heterologous sequences. Therefore, in subtelomeric regions, cell survival to DSBs is higher and alternative modes of repair allow new genomic combinations to be generated. Furthermore, subtelomeric rearrangements depend on the recombination process, which, unexpectedly, also promotes the joining of heterologous sequences. Finally, we report that the Rad52 protein increases the efficiency of NHEJ.
机译:双链断裂(DSB)修复在染色体进化中起重要作用。在没有常规同源重组的系统中,我们研究了DSB的命运与其在酵母染色体XI上的位置有关。我们报告说,非同源末端连接(NHEJ)的相对频率是内部染色体部分中DSB修复的排他性模式,朝着端粒逐渐降低,从而使绝对频率几乎保持恒定,而其他修复机制通常涉及远端染色体片段的丢失,出现在亚端粒区域。 DSB与染色体末端的距离在这些修复机制的整体频率中起着至关重要的作用。直接添加端粒是罕见的,其他事件(如断裂诱导的复制,质粒掺入和基因转化)涉及异源序列的获取。因此,在亚端粒区域,细胞对DSB的存活率更高,并且替代的修复方式允许生成新的基因组组合。此外,亚端粒重排取决于重组过程,这出乎意料地还促进了异源序列的连接。最后,我们报道Rad52蛋白增加了NHEJ的效率。

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