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Determination of the minimum domain II size of Escherichia coli DnaA protein essential for cell viability

机译:测定大肠杆菌DNAA蛋白的最小结构域II大小对细胞活力必需的必需品

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The DnaA protein is the bacterial initiator of replication at a unique chromosomal site, oriC. It is present in all bacterial species and has a conserved structure with four domains. The structures of domains I and III–IV have been solved recently for some bacterial species, and the molecular process leading to the initiation event has been investigated in detail. On the other hand, domain II appears to have no rigid structure and is assumed to be a flexible linker connecting the N-terminal domain I and the C-terminal domains III–IV. It differs significantly in length and amino acid sequence among bacterial species. Whether or not domain II has any function(s) to initiate replication is unknown. The precise borders at both of its ends as well as its essential portions for cell viability are also unknown. In this study, we introduced systematic deletions into the domain II region on the chromosomal dnaA gene of Escherichia coli and examined their effect on cell physiology. Stretches of 30–36 consecutive amino acid residues could be deleted from various portions between the 78th and the 136th residues without affecting cell viability. We propose that domain II of E. coli DnaA is from the 79th to the 135th residues and at least 21–27 residues are required as a spacer to keep domains I and III–IV in the correct positions.
机译:DNAA蛋白是在独特的染色体位点,ORIC的复制的细菌引发剂。它存在于所有细菌种类中,并且具有四个结构域的保守结构。最近已经对某些细菌种类进行了解决的结构和III-IV的结构,并详细研究了导致启动事件的分子过程。另一方面,域II似乎没有刚性结构,并且假设是连接N末端域I和C末端结构域III-IV的柔性接头。细菌种类中的长度和氨基酸序列显着不同。域II是否具有启动复制的任何功能是未知的。其两端的精确边框以及其基本部分用于细胞活力也是未知的。在这项研究中,我们将系统缺失引入大肠杆菌染色体DNAA基因上的域II区域,并检查了它们对细胞生理学的影响。延伸30-36个连续氨基酸残基可以从第78和第136个残基之间的各个部分删除,而不会影响细胞活力。我们提出了大肠杆菌DNAA的结构域II从第79到第79到第135个残基,至少21-27个残基需要作为保持结构域I和III-IV的间隔物。

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