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DnaA蛋白与酸性磷脂之间功能相互作用的分子机制:重要氨基酸的鉴定

Molecular mechanism for functional interaction between DnaA protein and acidic phospholipids: identification of important amino acids.

作者信息

Makise M, Mima S, Tsuchiya T, Mizushima T

机构信息

Faculty of Pharmaceutical Sciences, Okayama University, and PRESTO, Japan Science and Technology Corporation, Okayama 700-8530, Japan.

出版信息

J Biol Chem. 2001 Mar 9;276(10):7450-6. doi: 10.1074/jbc.M009643200. Epub 2000 Dec 1.

Abstract

DnaA protein, the initiator of chromosomal DNA replication in Escherichia coli, seems to be reactivated from the ADP-bound form to its ATP-bound form through stimulation of ADP release by acidic phospholipids such as cardiolipin. We previously reported that two potential amphipathic helices (Lys-327 to Ile-344 and Asp-357 to Val-374) of DnaA protein are involved in the functional interaction between DnaA and cardiolipin. In relation to one of these helices (Asp-357 to Val-374), we demonstrated that basic amino acids in the helix, especially Lys-372, are vital for this interaction. In this study, we have identified an amino acid in the second potential amphipathic helix (Lys-327 to Ile-344), which would also appear to be involved in the interaction. We constructed three mutant dnaA genes with a single mutation (dnaAR328E, dnaAR334E, and dnaAR342E) and examined the function of the mutant proteins. DnaAR328E, but not DnaAR334E and DnaAR342E, was found to be more resistant to inhibition of its ATP binding activity by cardiolipin than the wild-type protein. The stimulation of ADP release from DnaAR328E by cardiolipin was also weaker than that observed with the other mutants and the wild-type protein. These results suggest that Arg-328 of DnaA protein is involved in the functional interaction of this protein with acidic phospholipids. We propose that acidic phospholipids bind to two basic amino acid residues (Arg-328 and Lys-372) of DnaA protein and change the higher order structure of its ATP-binding pocket, which in turn stimulates the release of ADP from the protein.

摘要

DnaA蛋白是大肠杆菌染色体DNA复制的起始因子,似乎可通过心磷脂等酸性磷脂刺激ADP释放,从与ADP结合的形式重新激活为与ATP结合的形式。我们之前报道过,DnaA蛋白的两个潜在两亲性螺旋(赖氨酸-327至异亮氨酸-344以及天冬氨酸-357至缬氨酸-374)参与了DnaA与心磷脂之间的功能相互作用。关于其中一个螺旋(天冬氨酸-357至缬氨酸-374),我们证明了该螺旋中的碱性氨基酸,尤其是赖氨酸-372,对于这种相互作用至关重要。在本研究中,我们在第二个潜在两亲性螺旋(赖氨酸-327至异亮氨酸-344)中鉴定出一个氨基酸,它似乎也参与了这种相互作用。我们构建了三个带有单个突变的突变型dnaA基因(dnaAR328E、dnaAR334E和dnaAR342E),并检测了突变蛋白的功能。发现DnaAR328E比野生型蛋白更能抵抗心磷脂对其ATP结合活性的抑制。心磷脂对DnaAR328E释放ADP的刺激也比其他突变体和野生型蛋白弱。这些结果表明,DnaA蛋白的精氨酸-328参与了该蛋白与酸性磷脂的功能相互作用。我们提出,酸性磷脂与DnaA蛋白的两个碱性氨基酸残基(精氨酸-328和赖氨酸-372)结合,并改变其ATP结合口袋的高级结构,进而刺激ADP从该蛋白释放。

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