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Hda 与 DnaA 相互作用的新必需残基在 DnaA 的调控失活中:Hda AAA 盒 VI 和 VII 基序的独特作用。

Novel essential residues of Hda for interaction with DnaA in the regulatory inactivation of DnaA: unique roles for Hda AAA Box VI and VII motifs.

机构信息

Department of Molecular Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka 812-8582, Japan.

出版信息

Mol Microbiol. 2010 Apr;76(2):302-17. doi: 10.1111/j.1365-2958.2010.07074.x. Epub 2010 Feb 1.

Abstract

Escherichia coli ATP-DnaA initiates chromosomal replication. For preventing extra-initiations, a complex of ADP-Hda and the DNA-loaded replicase clamp promotes DnaA-ATP hydrolysis, yielding inactive ADP-DnaA. However, the Hda-DnaA interaction mode remains unclear except that the Hda Box VII Arg finger (Arg-153) and DnaA sensor II Arg-334 within each AAA(+) domain are crucial for the DnaA-ATP hydrolysis. Here, we demonstrate that direct and functional interaction of ADP-Hda with DnaA requires the Hda residues Ser-152, Phe-118 and Asn-122 as well as Hda Arg-153 and DnaA Arg-334. Structural analyses suggest intermolecular interactions between Hda Ser-152 and DnaA Arg-334 and between Hda Phe-118 and the DnaA Walker B motif region, in addition to an intramolecular interaction between Hda Asn-122 and Arg-153. These interactions likely sustain a specific association of ADP-Hda and DnaA, promoting DnaA-ATP hydrolysis. Consistently, ATP-DnaA and ADP-DnaA interact with the ADP-Hda-DNA-clamp complex with similar affinities. Hda Phe-118 and Asn-122 are contained in the Box VI region, and their hydrophobic and electrostatic features are basically conserved in the corresponding residues of other AAA(+) proteins, suggesting a conserved role for Box VI. These findings indicate novel interaction mechanisms for Hda-DnaA as well as a potentially fundamental mechanism in AAA(+) protein interactions.

摘要

大肠杆菌 ATP-DnaA 引发染色体复制。为了防止额外的起始,ADP-Hda 与负载 DNA 的复制酶夹的复合物促进 DnaA-ATP 水解,产生非活性的 ADP-DnaA。然而,除了 Hda 盒 VII Arg 手指(Arg-153)和每个 AAA(+) 结构域内的 DnaA 传感器 II Arg-334 对于 DnaA-ATP 水解至关重要之外,Hda-DnaA 相互作用模式仍不清楚。在这里,我们证明 ADP-Hda 与 DnaA 的直接和功能相互作用需要 Hda 残基 Ser-152、Phe-118 和 Asn-122 以及 Hda Arg-153 和 DnaA Arg-334。结构分析表明,Hda Ser-152 和 DnaA Arg-334 之间以及 Hda Phe-118 和 DnaA Walker B 基序区域之间存在分子间相互作用,此外,Hda Asn-122 和 Arg-153 之间存在分子内相互作用。这些相互作用可能维持了 ADP-Hda 和 DnaA 的特异性结合,促进了 DnaA-ATP 水解。一致地,ATP-DnaA 和 ADP-DnaA 与 ADP-Hda-DNA 夹复合物以相似的亲和力相互作用。Hda Phe-118 和 Asn-122 包含在 Box VI 区域中,其疏水性和静电特征在其他 AAA(+) 蛋白的相应残基中基本保守,表明 Box VI 具有保守作用。这些发现表明了 Hda-DnaA 的新相互作用机制以及 AAA(+) 蛋白相互作用中的潜在基本机制。

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