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首页> 外文期刊>Nucleic Acids Research >Effects of chain length and geometry on the activation of DNA damage bypass by polyubiquitylated PCNA
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Effects of chain length and geometry on the activation of DNA damage bypass by polyubiquitylated PCNA

机译:链长和几何形状对多边形PCNA抗DNA损伤旁路激活的影响

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摘要

Ubiquitylation of the eukaryotic sliding clamp, PCNA, activates a pathway of DNA damage bypass that facilitates the replication of damaged DNA. In its monoubiquitylated form, PCNA recruits a set of damage-tolerant DNA polymerases for translesion synthesis. Alternatively, modification by K63-linked polyubiquitylation triggers a recombinogenic process involving template switching. Despite the identification of proteins interacting preferentially with polyubiquitylated PCNA, the molecular function of the chain and the relevance of its K63-linkage are poorly understood. Using genetically engineered mimics of polyubiquitylated PCNA, we have now examined the properties of the ubiquitin chain required for damage bypass in budding yeast. By varying key parameters such as the geometry of the junction, cleavability and capacity for branching, we demonstrate that either the structure of the ubiquitinubiquitin junction or its dynamic assembly or disassembly at the site of action exert a critical impact on damage bypass, even though known effectors of polyubiquitylated PCNA are not strictly linkage-selective. Moreover, we found that a single K63-junction supports substantial template switching activity, irrespective of its attachment site on PCNA. Our findings provide insight into the interrelationship between the two branches of damage bypass and suggest the existence of a yet unidentified, highly linkage-selective receptor of polyubiquitylated PCNA.
机译:真核滑动钳的Ubiquitylation,PCNA,激活DNA损伤旁路的途径,便于损坏DNA的复制。在其单相中性化形式中,PCNA促进一组耐损害的DNA聚合酶,用于翻渗涂。或者,通过K63连接的络合剂改性触发涉及模板切换的重组过程。尽管鉴定蛋白质优先与多核化的PCNA相互作用,但链条的分子函数和其K63-键的相关性差异很差。使用基因工程的PCNA的模拟方法,我们现在已经检查了突发绕酵母损伤所需的泛素链的性质。通过改变关键参数,例如结的几何形状,分支的可切割性和能力,我们证明了泛素脂素结合的结构或其动态组装或拆卸在动作现场的拆卸对损坏旁路施加危急,即使已知多核化的PCNA的效应器不严格连接选择性。此外,我们发现单个K63结合物支持大量模板切换活动,而不管其在PCNA上的附件部位如何。我们的研究结果提供了洞察力旁路两分行之间的相互关系,并表明存在尚未识别的多核性PCNA的尚未识别的高度联动选择性受体。

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