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首页> 外文期刊>DNA repair >Two stages of XRCC1 recruitment and two classes of XRCC1 foci formed in response to low level DNA damage induced by visible light, or stress triggered by heat shock
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Two stages of XRCC1 recruitment and two classes of XRCC1 foci formed in response to low level DNA damage induced by visible light, or stress triggered by heat shock

机译:XRCC1募集的两个阶段和XRCC1焦点的两个类别是对可见光引起的低水平DNA损伤或热激引发的应激反应形成的

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Induction of local photosensitised DNA damage has been used to study recruitment of repair factors, spatial organisation and subsequent stages of the repair processes. However, the damage induced by a focused laser beam interacting with a photosensitiser may not fully reflect the types of damage and repair encountered in cells of an animal under typical conditions in vivo. We report on two characteristic stages of recruitment of XRCC1 (a protein engaged in BER and SSB repair pathways), in response to low level DNA damage induced by visible light. We demonstrate that, when just a few DNA breaks are induced in a small region of the nucleus, the recruited XRCC1 is initially distributed uniformly throughout this region, and rearranges into several small stationary foci within minutes. In contrast, when heavy damage of various types (including oxidative damage) is induced in cells pre-sensitized with a DNA-binding drug ethidium bromide, XRCC1 is also recruited but fails to rearrange from the stage of the uniform distribution to the stage of several small foci, indicating that this heavy damage interferes with the progress and completion of the repair processes. We hypothesize that that first stage may reflect recruitment of XRCC1 to poly(ADPribose) moieties in the region surrounding the single-strand break, while the second-binding directly to the DNA lesions. We also show that moderate damage or stress induces formation of two types of XRCC1-containing foci differing in their mobility. A large subset of DNA damage-induced XRCC1 foci is associated with a major component of PML nuclear bodies - the Sp100 protein. (C) 2015 Elsevier B.V. All rights reserved.
机译:局部光敏化DNA损伤的诱导已用于研究修复因子的募集,空间组织和修复过程的后续阶段。然而,由聚焦的激光束与光敏剂相互作用引起的损伤可能不能完全反映出在体内典型条件下动物细胞中遇到的损伤和修复的类型。我们报告了XRCC1(参与BER和SSB修复途径的蛋白质)募集的两个特征阶段,以响应可见光诱导的低水平DNA损伤。我们证明,当在核的一个小区域中仅诱导几个DNA断裂时,募集的XRCC1最初均匀地分布在该区域中,并在数分钟内重新排列成几个小的固定焦点。相反,当在用DNA结合药物溴化乙锭预敏化的细胞中诱发各种类型的重度损伤(包括氧化损伤)时,XRCC1也被募集,但无法从均匀分布阶段重新排列到几个小焦点,表明这种严重损坏会影响修复过程的进度和完成。我们假设该第一阶段可能反映了XRCC1募集到单链断裂周围区域的poly(ADPribose)部分,而第二阶段则直接结合到DNA损伤上。我们还表明,中等程度的损害或压力会诱导两种类型的XRCC1含焦点的迁移率不同。 DNA损伤诱导的XRCC1病灶的很大一部分与PML核体的主要成分Sp100蛋白有关。 (C)2015 Elsevier B.V.保留所有权利。

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