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首页> 外文期刊>Nucleic Acids Research >TcaR-ssDNA complex crystal structure reveals new DNA binding mechanism of the MarR family proteins
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TcaR-ssDNA complex crystal structure reveals new DNA binding mechanism of the MarR family proteins

机译:TcaR-ssDNA复杂的晶体结构揭示了MarR家族蛋白的新DNA结合机制

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摘要

The teicoplanin-associated locus regulator (TcaR) regulates gene expression of proteins on the intercellular adhesion (ica) locus involved in staphylococci poly-A/-acetylglucosamine biosynthesis. The absence of TcaR increases poly-A/-acetylglucosamineproduction and promotes biofilm formation. Until recently, the mechanism of multiple antibiotic resistance regulator family protein members, such as TcaR, was restricted to binding double-stranded DNA. However, we recently found that TcaR strongly interacts with single-stranded DNA, which is a new role for this family of proteins. In this study, we report Staphylococcus epidermidis TcaR-single-stranded DNA complex structures. Our model suggests that TcaR and single-stranded DNA form a 6_1-symmetry polymer composed of TcaR dimers with single-stranded DNA that wraps outside the polymer and 12nt per TcaR dimer. Single-stranded DNA binding to TcaR involves a large conformational change at the DNA binding lobe. Several point mutations involving the single-stranded DNA binding surface validate interactions between single-stranded DNA and TcaR. Our results extend the novel role of multiple antibiotic resistance regulator family proteins in staphylococci.
机译:替考拉宁相关基因座调节剂(TcaR)调节参与葡萄球菌聚A /乙酰氨基葡萄糖生物合成的细胞间黏附(ica)位点上蛋白质的基因表达。 TcaR的缺乏增加了聚A /乙酰氨基葡萄糖的产生,并促进了生物膜的形成。直到最近,多种抗生素抗性调节剂家族蛋白成员(例如TcaR)的机制还仅限于结合双链DNA。但是,我们最近发现TcaR与单链DNA强烈相互作用,这是该蛋白家族的新角色。在这项研究中,我们报告表皮葡萄球菌TcaR单链DNA复杂结构。我们的模型表明,TcaR和单链DNA形成由TcaR二聚体组成的6_1对称聚合物,单链DNA包裹在聚合物外部,每个TcaR二聚体为12nt。与TcaR结合的单链DNA在DNA结合叶处涉及较大的构象变化。涉及单链DNA结合表面的几个点突变验证了单链DNA与TcaR之间的相互作用。我们的结果扩展了葡萄球菌中多种抗生素抗性调节剂家族蛋白的新作用。

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