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形成ATP-DnaA特异性起始复合物需要DnaA精氨酸285,这是AAA+蛋白家族中的一个保守基序。

Formation of an ATP-DnaA-specific initiation complex requires DnaA Arginine 285, a conserved motif in the AAA+ protein family.

作者信息

Kawakami Hironori, Keyamura Kenji, Katayama Tsutomu

机构信息

Department of Molecular Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

出版信息

J Biol Chem. 2005 Jul 22;280(29):27420-30. doi: 10.1074/jbc.M502764200. Epub 2005 May 17.

Abstract

Escherichia coli DnaA protein, a member of the AAA+ superfamily, initiates replication from the chromosomal origin oriC in an ATP-dependent manner. Nucleoprotein complex formed on oriC with the ATP-DnaA multimer but not the ADP-DnaA multimer is competent to unwind the oriC duplex. The oriC region contains ATP-DnaA-specific binding sites termed I2 and I3, which stimulate ATP-DnaA-dependent oriC unwinding. In this study, we show that the DnaA R285A mutant is inactive for oriC replication in vivo and in vitro and that the mutation is associated with specific defects in oriC unwinding. In contrast, activities of DnaA R285A are sustained in binding to the typical DnaA boxes and to ATP and ADP, formation of multimeric complexes on oriC, and loading of the DnaB helicase onto single-stranded DNA. Footprint analysis of the DnaA-oriC complex reveals that the ATP form of DnaA R285A does not interact with ATP-DnaA-specific binding sites such as the I sites. A subgroup of DnaA molecules in the oriC complex must contain the Arg-285 residue for initiation. Sequence and structural analyses suggest that the DnaA Arg-285 residue is an arginine finger, an AAA+ family-specific motif that recognizes ATP bound to an adjacent subunit in a multimeric complex. In the context of these and previous results, the DnaA Arg-285 residue is proposed to play a unique role in the ATP-dependent conformational activation of an initial complex by recognizing ATP bound to DnaA and by modulating the structure of the DnaA multimer to allow interaction with ATP-DnaA-specific binding sites in the complex.

摘要

大肠杆菌DnaA蛋白是AAA +超家族的成员,以ATP依赖的方式从染色体起源oriC启动复制。在oriC上与ATP-DnaA多聚体而非ADP-DnaA多聚体形成的核蛋白复合物能够解开oriC双链。oriC区域包含称为I2和I3的ATP-DnaA特异性结合位点,它们刺激ATP-DnaA依赖的oriC解旋。在本研究中,我们表明DnaA R285A突变体在体内和体外对oriC复制均无活性,并且该突变与oriC解旋的特定缺陷相关。相比之下,DnaA R285A在与典型的DnaA框、ATP和ADP结合、在oriC上形成多聚体复合物以及将DnaB解旋酶加载到单链DNA上的活性得以维持。对DnaA-oriC复合物的足迹分析表明,DnaA R285A的ATP形式不与I位点等ATP-DnaA特异性结合位点相互作用。oriC复合物中的一组DnaA分子必须包含Arg-285残基才能启动。序列和结构分析表明,DnaA Arg-285残基是一个精氨酸指,这是AAA +家族特异性基序,可识别多聚体复合物中与相邻亚基结合的ATP。结合这些以及先前的结果,有人提出DnaA Arg-285残基在通过识别与DnaA结合的ATP并调节DnaA多聚体的结构以允许与复合物中的ATP-DnaA特异性结合位点相互作用,从而在初始复合物的ATP依赖构象激活中发挥独特作用。

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