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Analysis of Escherichia coli RecA Interactions with LexA λ CI and UmuD by Site-Directed Mutagenesis of recA

机译:通过recA的定点诱变分析大肠杆菌RecA与LexAλCI和UmuD的相互作用

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摘要

An early event in the induction of the SOS system of Escherichia coli is RecA-mediated cleavage of the LexA repressor. RecA acts indirectly as a coprotease to stimulate repressor self-cleavage, presumably by forming a complex with LexA. How complex formation leads to cleavage is not known. As an approach to this question, it would be desirable to identify the protein-protein interaction sites on each protein. It was previously proposed that LexA and other cleavable substrates, such as phage λ CI repressor and E. coli UmuD, bind to a cleft located between two RecA monomers in the crystal structure. To test this model, and to map the interface between RecA and its substrates, we carried out alanine-scanning mutagenesis of RecA. Twenty double mutations were made, and cells carrying them were characterized for RecA-dependent repair functions and for coprotease activity towards LexA, λ CI, and UmuD. One mutation in the cleft region had partial defects in cleavage of CI and (as expected from previous data) of UmuD. Two mutations in the cleft region conferred constitutive cleavage towards CI but not towards LexA or UmuD. By contrast, no mutations in the cleft region or elsewhere in RecA were found to specifically impair the cleavage of LexA. Our data are consistent with binding of CI and UmuD to the cleft between two RecA monomers but do not provide support for the model in which LexA binds in this cleft.
机译:诱导大肠杆菌SOS系统的早期事件是RecA介导的LexA阻遏物的裂解。 RecA间接地作为一种共蛋白酶来刺激阻遏物的自我切割,大概是通过与LexA形成复合物来实现的。复杂的形成如何导致裂解尚不清楚。作为解决该问题的方法,希望鉴定每种蛋白质上的蛋白质-蛋白质相互作用位点。先前曾提出,LexA和其他可裂解的底物(如噬菌体λCI阻遏物和大肠杆菌UmuD)与位于晶体结构中两个RecA单体之间的裂缝结合。为了测试该模型,并绘制RecA及其底物之间的界面,我们对RecA进行了丙氨酸扫描诱变。进行了20次双突变,并表征了携带它们的细胞具有RecA依赖的修复功能以及针对LexA,λCI和UmuD的共蛋白酶活性。裂隙区域的一个突变在CI和UmuD的切割中存在部分缺陷(如先前数据所预期)。裂口区域中的两个突变赋予了对CI的本构性切割,而对LexA或UmuD却没有。相比之下,在RecA的裂隙区域或其他地方没有发现突变会特别削弱LexA的切割。我们的数据与CI和UmuD与两个RecA单体之间的裂缝的结合是一致的,但没有为LexA在此裂缝中结合的模型提供支持。

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