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由组成自然发生的酵母脆性位点的反向 ty 元件的双链 DNA 断裂引起的染色体畸变与 Mre11p 和 Sae2p 无关。

Chromosome aberrations resulting from double-strand DNA breaks at a naturally occurring yeast fragile site composed of inverted ty elements are independent of Mre11p and Sae2p.

机构信息

Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Genetics. 2009 Oct;183(2):423-39, 1SI-26SI. doi: 10.1534/genetics.109.106385. Epub 2009 Jul 27.

Abstract

Genetic instability at palindromes and spaced inverted repeats (IRs) leads to chromosome rearrangements. Perfect palindromes and IRs with short spacers can extrude as cruciforms or fold into hairpins on the lagging strand during replication. Cruciform resolution produces double-strand breaks (DSBs) with hairpin-capped ends, and Mre11p and Sae2p are required to cleave the hairpin tips to facilitate homologous recombination. Fragile site 2 (FS2) is a naturally occurring IR in Saccharomyces cerevisiae composed of a pair of Ty1 elements separated by approximately 280 bp. Our results suggest that FS2 forms a hairpin, rather than a cruciform, during replication in cells with low levels of DNA polymerase. Cleavage of this hairpin results in a recombinogenic DSB. We show that DSB formation at FS2 does not require Mre11p, Sae2p, Rad1p, Slx4p, Pso2p, Exo1p, Mus81p, Yen1p, or Rad27p. Also, repair of DSBs by homologous recombination is efficient in mre11 and sae2 mutants. Homologous recombination is impaired at FS2 in rad52 mutants and most aberrations reflect either joining of two broken chromosomes in a "half crossover" or telomere capping of the break. In support of hairpin formation precipitating DSBs at FS2, two telomere-capped deletions had a breakpoint near the center of the IR. In summary, Mre11p and Sae2p are not required for DSB formation at FS2 or the subsequent repair of these DSBs.

摘要

回文和间隔倒置重复(IR)的遗传不稳定性导致染色体重排。在复制过程中,完美的回文和具有短间隔的 IR 可以作为十字结构或折叠成滞后链上的发夹。十字结构的解决会产生带有发夹帽末端的双链断裂(DSB),并且需要 Mre11p 和 Sae2p 切割发夹尖端以促进同源重组。脆弱位点 2(FS2)是酿酒酵母中天然存在的 IR,由一对 Ty1 元件组成,它们之间相隔约 280bp。我们的结果表明,在 DNA 聚合酶水平较低的细胞中,FS2 在复制过程中形成发夹而不是十字结构。这种发夹的切割导致重组性 DSB。我们表明,FS2 处的 DSB 形成不需要 Mre11p、Sae2p、Rad1p、Slx4p、Pso2p、Exo1p、Mus81p、Yen1p 或 Rad27p。此外,同源重组修复在 mre11 和 sae2 突变体中是有效的。在 rad52 突变体中,同源重组受损,大多数异常反映了两个断裂染色体在“半交叉”中的连接,或断裂处的端粒帽。支持 FS2 处发夹形成引发 DSB,两个端粒帽缺失在 IR 中心附近有一个断点。总之,Mre11p 和 Sae2p 不需要在 FS2 处形成 DSB 或随后修复这些 DSB。

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