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The RdgC protein employs a novel mechanism involving a finger domain to bind to circular DNA

机译:RdgC蛋白采用了一种新的机制,该机制涉及手指域与环状DNA结合

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摘要

The DNA-binding protein RdgC has been identified as an inhibitor of RecA-mediated homologous recombination in Escherichia coli. In Neisseria species, RdgC also has a role in virulence-associated antigenic variation. We have previously solved the crystal structure of the E. coli RdgC protein and shown it to form a toroidal dimer. In this study, we have conducted a mutational analysis of residues proposed to mediate interactions at the dimer interfaces. We demonstrate that destabilizing either interface has a serious effect on in vivo function, even though a stable complex with circular DNA was still observed. We conclude that tight binding is required for inhibition of RecA activity. We also investigated the role of the RdgC finger domain, and demonstrate that it plays a crucial role in the binding of circular DNA. Together, these data allow us to propose a model for how RdgC loads onto DNA. We discuss how RdgC might inhibit RecA-mediated strand exchange, and how RdgC might be displaced by other DNA metabolism enzymes such as polymerases and helicases.
机译:DNA结合蛋白RdgC已被鉴定为在大肠杆菌中RecA介导的同源重组的抑制剂。在奈瑟氏球菌物种中,RdgC在与毒力相关的抗原变异中也起作用。我们之前已经解决了大肠杆菌RdgC蛋白的晶体结构,并显示了它形成环形二聚体。在这项研究中,我们对提议介导二聚体界面相互作用的残基进行了突变分析。我们证明,即使仍然观察到具有环状DNA的稳定复合物,任何一个界面的失稳都会对体内功能产生严重影响。我们得出结论,紧密结合是抑制RecA活性所必需的。我们还研究了RdgC指结构域的作用,并证明它在环状DNA的结合中起着至关重要的作用。这些数据加在一起,使我们可以提出一个有关RdgC如何加载到DNA上的模型。我们讨论了RdgC如何抑制RecA介导的链交换,以及RdgC如何被其他DNA代谢酶(例如聚合酶和解旋酶)取代。

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