首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Arg Fingers of Key DnaA Protomers Are Oriented Inward within the Replication Origin oriC and Stimulate DnaA Subcomplexes in the Initiation Complex
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The Arg Fingers of Key DnaA Protomers Are Oriented Inward within the Replication Origin oriC and Stimulate DnaA Subcomplexes in the Initiation Complex

机译:关键DnaA启动子的Arg指在复制起点oriC中向内定向并在启动复合物中刺激DnaA亚复合体。

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摘要

ATP-DnaA binds to multiple DnaA boxes in the Escherichia coli replication origin (oriC) and forms left-half and right-half subcomplexes that promote DNA unwinding and DnaB helicase loading. DnaA forms homo-oligomers in a head-to-tail manner via interactions between the bound ATP and Arg-285 of the adjacent protomer. DnaA boxes R1 and R4 reside at the outer edges of the DnaA-binding region and have opposite orientations. In this study, roles for the protomers bound at R1 and R4 were elucidated using chimeric DnaA molecules that had alternative DNA binding sequence specificity and chimeric oriC molecules bearing the alternative DnaA binding sequence at R1 or R4. In vitro, protomers at R1 and R4 promoted initiation regardless of whether the bound nucleotide was ADP or ATP. Arg-285 was shown to play an important role in the formation of subcomplexes that were active in oriC unwinding and DnaB loading. The results of in vivo analysis using the chimeric molecules were consistent with the in vitro data. Taken together, the data suggest a model in which DnaA subcomplexes form in symmetrically opposed orientations and in which the Arg-285 fingers face inward to mediate interactions with adjacent protomers. This mode is consistent with initiation regulation by ATP-DnaA and bidirectional loading of DnaB helicases.
机译:ATP-DnaA与大肠杆菌复制起点(oriC)中的多个DnaA盒结合,并形成促进DNA解链和DnaB解旋酶负载的左半和右半亚复合物。 DnaA通过结合的ATP和邻近的前体的Arg-285之间的相互作用以头到尾的方式形成均聚物。 DnaA盒R1和R4驻留在DnaA绑定区域的外边缘,并具有相反的方向。在这项研究中,使用具有替代性DNA结合序列特异性的嵌合DnaA分子和在R1或R4处带有替代性DnaA结合序列的嵌合oriC分子阐明了在R1和R4上结合的启动子的作用。在体外,无论结合的核苷酸是ADP还是ATP,R1和R4的启动子都会促进启动。精氨酸285被证明在亚复合物的形成中起着重要作用,这些亚复合物在oriC展开和DnaB加载中很活跃。使用嵌合分子的体内分析结果与体外数据一致。综上所述,数据表明了一个模型,其中DnaA亚复合物以对称相反的方向形成,并且Arg-285手指面向内以介导与邻近protomer的相互作用。此模式与ATP-DnaA的启动调控和DnaB解旋酶的双向加载相一致。

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