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大肠杆菌dnaB连接区突变体导致的一般引发缺陷

Defect in general priming conferred by linker region mutants of Escherichia coli dnaB.

作者信息

Stordal L, Maurer R

机构信息

Department of Molecular Biology and Microbiology, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106-4960, USA.

出版信息

J Bacteriol. 1996 Aug;178(15):4620-7. doi: 10.1128/jb.178.15.4620-4627.1996.

Abstract

The dnaB gene of Escherichia coli encodes a bifunctional primase accessory protein/helicase necessary for chromosomal replication. Monomers of DnaB comprise two trypsin-resistant domains connected by a 45-amino-acid linker. To investigate the role of the linker in the structure and function of DnaB, we have purified and characterized three DnaB mutant proteins having single amino acid substitutions in the linker. We find that the mutant proteins retain the two-domain structure and assemble into hexamers that may be less stable than hexamers formed by wild-type DnaB. These mutant hexamers have hydrodynamic properties slightly different from those of the wild type, suggestive of a more open structure. The mutant proteins had reduced or absent ability to stimulate primase and also exhibited slight alterations in ATPase activity compared with the wild type. We conclude that the linker region promotes primase-DnaB interaction, but this effect may be indirect. We propose a model involving repositioning of N-terminal domains to explain the properties of the mutant proteins.

摘要

大肠杆菌的dnaB基因编码一种染色体复制所必需的双功能引发酶辅助蛋白/解旋酶。DnaB单体由两个抗胰蛋白酶结构域组成,通过一个45个氨基酸的连接子相连。为了研究连接子在DnaB结构和功能中的作用,我们纯化并鉴定了三种在连接子中具有单个氨基酸取代的DnaB突变蛋白。我们发现,突变蛋白保留了双结构域结构,并组装成六聚体,这些六聚体可能比野生型DnaB形成的六聚体稳定性更低。这些突变六聚体的流体力学性质与野生型略有不同,表明其结构更开放。与野生型相比,突变蛋白刺激引发酶的能力降低或丧失,并且ATP酶活性也有轻微改变。我们得出结论,连接子区域促进引发酶与DnaB的相互作用,但这种作用可能是间接的。我们提出了一个涉及N端结构域重新定位的模型来解释突变蛋白的性质。

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