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Protection of Arabidopsis Blunt-Ended Telomeres Is Mediated by a Physical Association with the Ku Heterodimer

机译:与拟南芥二聚体的物理联系介导了对拟南芥钝端端粒的保护。

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摘要

Telomeres form specialized chromatin that protects natural chromosome termini from being recognized as DNA double-strand breaks. Plants possess unusual blunt-ended telomeres that are unable to form t-loops or complex with single-strand DNA binding proteins, raising the question of the mechanism behind their protection. We have previously suggested that blunt-ended telomeres in Arabidopsis thaliana are protected by Ku, a DNA repair factor with a high affinity for DNA ends. In nonhomologous end joining, Ku loads onto broken DNA via a channel consisting of positively charged amino acids. Here, we demonstrate that while association of Ku with plant telomeres also depends on this channel, Ku’s requirements for DNA binding differ between DNA repair and telomere protection. We show that a Ku complex proficient in DNA loading but impaired in translocation along DNA is able to protect blunt-ended telomeres but is deficient in DNA repair. This suggests that Ku physically sequesters blunt-ended telomeres within its DNA binding channel, shielding them from other DNA repair machineries.
机译:端粒形成专门的染色质,可以保护天然染色体末端免于被识别为DNA双链断裂。植物具有不寻常的平末端端粒,这些端粒不能形成t环或与单链DNA结合蛋白复合,从而引发了对其保护机制的质疑。我们以前曾提出过拟南芥中端平的端粒受Ku保护,Ku是对DNA末端具有高度亲和力的DNA修复因子。在非同源末端连接中,Ku通过由带正电荷的氨基酸组成的通道加载到断裂的DNA上。在这里,我们证明了虽然Ku与植物端粒的关联也取决于该通道,但Ku对DNA结合的要求在DNA修复和端粒保护之间有所不同。我们表明,Ku复合物精通DNA负载,但沿DNA易位受损,能够保护末端钝的端粒,但缺乏DNA修复功能。这表明,Ku在其DNA结合通道内将多端末端的端粒物理隔离,使它们免受其他DNA修复机制的侵害。

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