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噬菌体λ的Rap结构特异性核酸内切酶对霍利迪连接体的结合与拆分

Holliday junction binding and resolution by the Rap structure-specific endonuclease of phage lambda.

作者信息

Sharples Gary J, Curtis Fiona A, McGlynn Peter, Bolt Edward L

机构信息

Centre for Infectious Diseases, Wolfson Research Institute, University of Durham, Queen's Campus, Stockton-on-Tees TS17 6BH, UK.

出版信息

J Mol Biol. 2004 Jul 16;340(4):739-51. doi: 10.1016/j.jmb.2004.05.030.

Abstract

Rap endonuclease targets recombinant joint molecules arising from phage lambda Red-mediated genetic exchange. Previous studies revealed that Rap nicks DNA at the branch point of synthetic Holliday junctions and other DNA structures with a branched component. However, on X junctions incorporating a three base-pair core of homology or with a fixed crossover, Rap failed to make the bilateral strand cleavages characteristic of a Holliday junction resolvase. Here, we demonstrate that Rap can mediate symmetrical resolution of 50 bp and chi Holliday structures containing larger homologous cores. On two different mobile 50 bp junctions Rap displays a weak preference for cleaving the phosphodiester backbone between 5'-GC dinucleotides. The products of resolution on both large and small DNA substrates can be sealed by T4 DNA ligase, confirming the formation of nicked duplexes. Rap protein was also assessed for its capacity to influence the global conformation of junctions in the presence or absence of magnesium ions. Unlike the known Holliday junction binding proteins, Rap does not affect the angle of duplex arms, implying an unorthodox mode of junction binding. The results demonstrate that Rap can function as a Holliday junction resolvase in addition to eliminating other branched structures that may arise during phage recombination.

摘要

Rap核酸内切酶作用于由噬菌体λ Red介导的基因交换产生的重组连接分子。先前的研究表明,Rap在合成霍利迪连接点的分支点以及其他具有分支成分的DNA结构处切割DNA。然而,在含有三个碱基对同源核心或具有固定交叉点的X连接点上,Rap未能进行霍利迪连接点解离酶特有的双边链切割。在这里,我们证明Rap可以介导含有更大同源核心的50 bp和chi霍利迪结构的对称解离。在两个不同的可移动50 bp连接点上,Rap对切割5'-GC二核苷酸之间的磷酸二酯主链表现出较弱的偏好。大小DNA底物上的解离产物都可以被T4 DNA连接酶封闭,这证实了带切口双链体的形成。还评估了Rap蛋白在存在或不存在镁离子的情况下影响连接点整体构象的能力。与已知的霍利迪连接点结合蛋白不同,Rap不影响双链臂的角度,这意味着其连接点结合模式是非传统的。结果表明,Rap除了消除噬菌体重组过程中可能出现的其他分支结构外,还可以作为霍利迪连接点解离酶发挥作用。

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