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Fungal Ku prevents permanent cell cycle arrest by suppressing DNA damage signaling at telomeres

机译:真菌Ku通过抑制以端粒抑制DNA损伤信号来预防永久性细胞循环捕获

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摘要

The Ku heterodimer serves in the initial step in repairing DNA double-strand breaks by the non-homologous end-joining pathway. Besides this key function, Ku also plays a role in other cellular processes including telomere maintenance. Inactivation of Ku can lead to DNA repair defects and telomere aberrations. In model organisms where Ku has been studied, inactivation can lead to DNA repair defects and telomere aberrations. In general Ku deficient-mutants are viable, but a notable exception to this is human where Ku has been found to be essential. Here we report that similar to the situation in human Ku is required for cell proliferation in the fungus Ustilago maydis. Using conditional strains for Ku expression, we found that cells arrest permanently in G2 phase when Ku expression is turned off. Arrest results from cell cycle checkpoint activation due to persistent signaling via the DNA damage response (DDR). Our results point to the telomeres as the most likely source of the DNA damage signal. Inactivation of the DDR makes the Ku complex dispensable for proliferation in this organism. Our findings suggest that in U. may-dis, unprotected telomeres arising from Ku depletion are the source of the signal that activates the DDR leading to cell cycle arrest.
机译:Ku Heterodimer在修复DNA双链断裂的初始步骤中,通过非同源的终端连接途径。除此关键功能外,KU还在其他蜂窝过程中发挥作用,包括端粒维护。 KU的失活可以导致DNA修复缺陷和端粒畸变。在研究KU的模型生物中,灭活可以导致DNA修复缺陷和端粒畸变。在一般的ku缺乏突变体是可行的,但对这是一个值得注意的例外是人类,其中被发现是必不可少的。在这里,我们报告类似于人类ku的情况是真菌ustilago maydis中的细胞增殖所必需的。使用ku表达的条件菌株,我们发现当ku表达关闭时,细胞永久地在g2阶段停止。由于通过DNA损伤响应(DDR)而导致的细胞周期检查点激活的阻止结果。我们的结果指向端粒,作为DNA损伤信号的最可能源。 DDR的失活使Ku复合物能够在该生物体中进行增殖。我们的研究结果表明,在U. May-Dis中,由Ku消耗产生的未受保护的端粒是激活DDR导致细胞周期骤停的信号的来源。

著录项

  • 来源
    《Nucleic Acids Research》 |2015年第4期|共14页
  • 作者单位

    Inst Biol Func Genom CSIC Salamanca 37007 Spain;

    Cornell Univ Weill Med Coll Weill Cornell Canc Ctr Dept Microbiol &

    Immunol New York NY 10021 USA;

    Ctr Nacl Biotecnol CSIC Madrid 28049 Spain;

    Cornell Univ Weill Med Coll Weill Cornell Canc Ctr Dept Microbiol &

    Immunol New York NY 10021 USA;

    Cornell Univ Weill Med Coll Weill Cornell Canc Ctr Dept Microbiol &

    Immunol New York NY 10021 USA;

    Inst Biol Func Genom CSIC Salamanca 37007 Spain;

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

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