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Recombinational repair of radiation-induced double-strand breaks occurs in the absence of extensive resection

机译:在没有广泛的切除的情况下发生辐射诱导的双链断裂的重组修复

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摘要

Recombinational repair provides accurate chromosomal restitution after double-strand break (DSB) induction. While all DSB recombination repair models include 5'-3' resection, there are no studies that directly assess the resection needed for repair between sister chromatids in G-2 arrested cells of random, radiation-induced 'dirty' DSBs. Using our Pulse Field Gel Electrophoresis-shift approach, we determined resection at IR-DSBs in WT and mutants lacking exonuclease1 or Sgs1 helicase. Lack of either reduced resection length by half, without decreased DSB repair or survival. In the exo1 Delta sgs1 Delta double mutant, resection was barely detectable, yet it only took an additional hour to achieve a level of repair comparable toWT and there was only a 2-fold dose-modifying effect on survival. Results with a Dnl4 deletion strain showed that remaining repair was not due to endjoining. Thus, similar to what has been shown for a single, clean HO-induced DSB, a severe reduction in resection tract length has only a modest effect on repair of multiple, dirty DSBs in G2-arrested cells. Significantly, this study provides the first opportunity to directly relate resection length at DSBs to the capability for global recombination repair between sister chromatids.
机译:重组修复在双链断裂(DSB)诱导后提供精确的染色体恢复原状。虽然所有DSB重组修复模型包括5'-3'切除,但没有研究,即直接评估在G-2被无规辐射诱导的“脏”DSBS的G-2被捕获的细胞中修复所需的切除术。使用我们的脉冲场凝胶电泳换档方法,我们在WT和缺乏外切核酸酶的突变体中测定切除IR-DSBS或SGS1螺旋酶。缺乏切除长度减少一半,无需减少DSB修复或存活。在EXO1 DELTA SGS1 DELTA双突变体中,切除术勉强可检测到,但它只需要一个额外的时间来实现相当的TIBT水平,并且只有2倍的剂量改性效果对存活率。 DNL4缺失应变的结果显示,剩余的修复不是由于腹部线。因此,类似于针对单个清洁的HO诱导的DSB所示的类似,切除束长度的严重降低仅对G2捕集细胞中多个脏型DSB的修复进行了适度的影响。值得注意的是,该研究提供了第一个直接将切除长度直接在DSB中转化的机会,以在姐妹染色体之间全球重组修复的能力。

著录项

  • 来源
    《Nucleic Acids Research》 |2016年第2期|共10页
  • 作者单位

    NIEHS Chromosome Stabil Sect Genome Integr &

    Struct Biol Lab NIH POB 12233 Res Triangle Pk NC 27709 USA;

    NIEHS Chromosome Stabil Sect Genome Integr &

    Struct Biol Lab NIH POB 12233 Res Triangle Pk NC 27709 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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