首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >RuvC protein resolves Holliday junctions via cleavage of the continuous (noncrossover) strands.
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RuvC protein resolves Holliday junctions via cleavage of the continuous (noncrossover) strands.

机译:RuvC蛋白通过切割连续(非交叉)链来解析霍利迪连接。

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摘要

The RuvC protein of Escherichia coli resolves Holliday junctions during genetic recombination and the postreplicational repair of DNA damage. Using synthetic Holliday junctions that are constrained to adopt defined isomeric configurations, we show that resolution occurs by symmetric cleavage of the continuous (noncrossing) pair of DNA strands. This result contrasts with that observed with phage T4 endonuclease VII, which cleaves the pair of crossing strands. In the presence of RuvC, the pair of continuous strands (i.e., the target strands for cleavage) exhibit a hypersensitivity to hydroxyl radicals. These results indicate that the continuous strands are distorted within the RuvC/Holliday junction complex and that RuvC-mediated resolution events require protein-directed structural changes to the four-way junction.
机译:大肠杆菌的RuvC蛋白在基因重组和DNA损伤的复制后修复过程中解析了霍利迪连接。使用被限制采用定义的异构构型的合成霍利迪连接,我们显示了通过连续(非交叉)对DNA链的对称裂解产生的分辨率。该结果与噬菌体T4内切核酸酶VII观察到的结果相反,该酶切成对的交叉链。在存在RuvC的情况下,这对连续链(即用于切割的目标链)对羟基自由基表现出超敏性。这些结果表明,在RuvC / Holliday连接复合体中,连续链变形,并且RuvC介导的拆分事件需要将蛋白质定向的结构改变为四向连接。

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