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协同的DnaA与负超螺旋datA位点结合刺激DnaA-ATP水解。

Cooperative DnaA Binding to the Negatively Supercoiled datA Locus Stimulates DnaA-ATP Hydrolysis.

作者信息

Kasho Kazutoshi, Tanaka Hiroyuki, Sakai Ryuji, Katayama Tsutomu

机构信息

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

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

出版信息

J Biol Chem. 2017 Jan 27;292(4):1251-1266. doi: 10.1074/jbc.M116.762815. Epub 2016 Dec 9.

Abstract

Timely initiation of replication in Escherichia coli requires functional regulation of the replication initiator, ATP-DnaA. The cellular level of ATP-DnaA increases just before initiation, after which its level decreases through hydrolysis of DnaA-bound ATP, yielding initiation-inactive ADP-DnaA. Previously, we reported a novel DnaA-ATP hydrolysis system involving the chromosomal locus datA and named it datA-dependent DnaA-ATP hydrolysis (DDAH). The datA locus contains a binding site for a nucleoid-associating factor integration host factor (IHF) and a cluster of three known DnaA-binding sites, which are important for DDAH. However, the mechanisms underlying the formation and regulation of the datA-IHF·DnaA complex remain unclear. We now demonstrate that a novel DnaA box within datA is essential for ATP-DnaA complex formation and DnaA-ATP hydrolysis. Specific DnaA residues, which are important for interaction with bound ATP and for head-to-tail inter-DnaA interaction, were also required for ATP-DnaA-specific oligomer formation on datA Furthermore, we show that negative DNA supercoiling of datA stabilizes ATP-DnaA oligomers, and stimulates datA-IHF interaction and DnaA-ATP hydrolysis. Relaxation of DNA supercoiling by the addition of novobiocin, a DNA gyrase inhibitor, inhibits datA function in cells. On the basis of these results, we propose a mechanistic model of datA-IHF·DnaA complex formation and DNA supercoiling-dependent regulation for DDAH.

摘要

大肠杆菌中复制的及时起始需要对复制起始因子ATP-DnaA进行功能调控。ATP-DnaA的细胞水平在起始前刚刚升高,之后其水平通过与DnaA结合的ATP水解而降低,产生起始无活性的ADP-DnaA。此前,我们报道了一种涉及染色体位点datA的新型DnaA-ATP水解系统,并将其命名为datA依赖性DnaA-ATP水解(DDAH)。datA位点包含一个类核相关因子整合宿主因子(IHF)的结合位点和三个已知的DnaA结合位点簇,它们对DDAH很重要。然而,datA-IHF·DnaA复合物形成和调控的潜在机制仍不清楚。我们现在证明,datA内的一个新型DnaA框对于ATP-DnaA复合物的形成和DnaA-ATP水解至关重要。对于与结合的ATP相互作用以及DnaA之间头对头相互作用很重要的特定DnaA残基,也是datA上ATP-DnaA特异性寡聚体形成所必需的。此外,我们表明datA的负DNA超螺旋稳定了ATP-DnaA寡聚体,并刺激了datA-IHF相互作用和DnaA-ATP水解。通过添加DNA回旋酶抑制剂新生霉素来松弛DNA超螺旋,会抑制datA在细胞中的功能。基于这些结果,我们提出了一个datA-IHF·DnaA复合物形成和DDAH的DNA超螺旋依赖性调控的机制模型。

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