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首页> 外文期刊>Journal of Molecular Biology >DiaA/HobA and DnaA: a pair of proteins co-evolved to cooperate during bacterial orisome assembly.
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DiaA/HobA and DnaA: a pair of proteins co-evolved to cooperate during bacterial orisome assembly.

机译:DiaA / HobA和DnaA:一对蛋白质在细菌的核糖体组装过程中共同进化以协同作用。

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Replication of the bacterial chromosome is initiated by binding the DnaA protein to oriC. Various factors control the ability of DnaA to bind and unwind DNA. Among them, Escherichia coli DiaA and Helicobacter pylori HobA have been characterized recently. They were found to interact with domain I of DnaA and stimulate DnaA binding to oriC. We examined HobA and DiaA functional homology and showed that, despite a high degree of structural similarity, they are not interchangeable because they are unable to interact with heterologous DnaA proteins. We revealed particular structural differences impeding formation of heterologous complexes and, consistently, we restored DiaA-enhanced oriC binding by the hybrid Ec(I)-Hp(II-IV)DnaA protein; i.e. H. pylori DnaA in which domain I was exchanged with that of E. coli. This proved that DiaA and HobA are functional homologs and upon binding to DnaA they exert a similar effect on orisome formation. Interestingly, we showed for the first time that the dynamics of DiaA- and HobA-stimulated orisome assembly are different. HobA enhances and accelerates HpDnaA binding to oriC, whereas DiaA increases but decelerates EcDnaA binding with oriC. We postulate that the different dynamics of orisome formation reflect the distinct strategies adopted by E. coli and H. pylori to regulate the frequency of the replication of their chromosomes. DiaA/HobA homolog have been identified in many proteobacteria and therefore might constitute a common, though species-specific, factor modulating bacterial orisome assembly.
机译:细菌染色体的复制是通过将DnaA蛋白与oriC结合而开始的。各种因素控制DnaA结合和解开DNA的能力。其中,近来已表征了大肠杆菌DiaA和幽门螺杆菌HobA。发现它们与DnaA的结构域I相互作用,并刺激DnaA与oriC结合。我们检查了HobA和DiaA的功能同源性,结果表明,尽管结构相似性很高,但它们不可互换,因为它们无法与异源DnaA蛋白相互作用。我们揭示了阻碍异源复合物形成的特殊结构差异,并且始终如一地,我们通过杂化Ec(I)-Hp(II-IV)DnaA蛋白恢复了DiaA增强的oriC结合;即幽门螺杆菌DnaA,其中结构域I与大肠杆菌的结构域交换。这证明DiaA和HobA是功能同源物,并且与DnaA结合后,它们对核糖体的形成具有相似的作用。有趣的是,我们首次证明了DiaA和HobA刺激的蛋白体组装的动力学是不同的。 HobA增强并加速HpDnaA与oriC的结合,而DiaA增加但减速与oriC的EcDnaA结合。我们假设,不同的体形成动力学反映了大肠杆菌和幽门螺杆菌所采用的不同策略来调节其染色体复制的频率。 DiaA / HobA同源物已在许多变形杆菌中发现,因此尽管构成了物种特异性的因素,但可能构成了一种常见的调节细菌核糖体装配的因子。

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