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The structure of a DnaA/HobA complex from Helicobacter pylori provides insight into regulation of DNA replication in bacteria

机译:幽门螺杆菌的DnaA / HobA复合物的结构提供了细菌中DNA复制调控的见解

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Bacterial DNA replication requires DnaA, an AAA+ ATPase that initiates replication at a specific chromosome region, oriC, and is regulated by species-specific regulators that directly bind DnaA. HobA is a DnaA binding protein, recently identified as an essential regulator of DNA replication in Helicobacter pylori. We report the crystal structure of HobA in complex with domains I and II of DnaA (DnaA~(I-II)) from H. pylori, the first structure of DnaA bound to one of its regulators. Biochemical characterization of the complex formed shows that a tetramer of HobA binds four DnaA~(I-II) molecules, and that DnaA~(I-II) is unable to oligomerize by itself. Mutagen-esis and protein-protein interaction studies demonstrate that some of the residues located at the HobA-DnaA~(I-II) interface in the structure are necessary for complex formation. Introduction of selected mutations into H. pylori shows that the disruption of the interaction between HobA and DnaA is lethal for the bacteria. Remarkably, the DnaA binding site of HobA is conserved in DiaA from Escherichia coli, suggesting that the structure of the HobA/ DnaA complex represents a model for DnaA regulation in other Gram-negative bacteria. Our data, together with those from other studies, indicate that HobA could play a crucial scaffolding role during the initiation of replication in H. pylori by organizing the first step of DnaA oligomerization and attachment to oriC.
机译:细菌DNA复制需要DnaA,这是一种AAA + ATPase,可在特定的染色体区域oriC启动复制,并受直接结合DnaA的物种特异性调节剂调控。 HobA是一种DnaA结合蛋白,最近被鉴定为幽门螺杆菌中DNA复制的必需调节剂。我们报道了与H. pylori的DnaA的结构域I和II(DnaA〜(I-II))复杂的HobA的晶体结构,该结构是DnaA与其一个调节子结合的第一个结构。形成的复合物的生化特性表明,HobA的四聚体结合了四个DnaA〜(I-II)分子,而DnaA〜(I-II)本身无法寡聚。诱变作用和蛋白质-蛋白质相互作用研究表明,结构中HobA-DnaA〜(I-II)界面处的一些残基是形成复合物所必需的。将选定的突变引入幽门螺杆菌表明,HobA和DnaA之间相互作用的破坏对细菌是致命的。值得注意的是,HobA的DnaA结合位点在大肠杆菌的DiaA中是保守的,这表明HobA / DnaA复合物的结构代表了其他革兰氏阴性细菌中DnaA调控的模型。我们的数据以及其他研究的数据表明,HobA可以通过组织DnaA寡聚化和与oriC结合的第一步,在幽门螺杆菌的复制起始过程中发挥关键的支架作用。

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