Lopez M M, Makhatadze G I
Department of Biochemistry and Molecular Biology/H171, Penn State University College of Medicine, Hershey, PA 17033, USA.
Biochim Biophys Acta. 2000 Jun 15;1479(1-2):196-202. doi: 10.1016/s0167-4838(00)00048-0.
The family of bacterial major cold shock proteins is characterized by a conserved sequence of 65-75 amino acid residues long which form a three-dimensional structure consisting of five beta-sheets arranged into a beta-barrel topology. CspA from Escherichia coli and CspB from Bacillus subtilis are typical representative members of this class of proteins. The exact biological role of these proteins is still unclear; however, they have been implicated to possess ssDNA-binding activity. In this paper, we report the results of a comparative quantitative analysis of ssDNA-binding activity of CspA and CspB. We show that in spite of high homology on the level of primary structure and very similar three-dimensional structures, CspA and CspB have different ssDNA-binding properties. Both proteins preferentially bind polypyrimidine ssDNA templates, but CspB binds to the T-based templates with one order of magnitude higher affinity than to U- or C-based ssDNA, whereas CspA binds T-, U- or C-based ssDNA with comparable affinity. They also show similarities and differences in their binding to ssDNA at high ionic strength. The results of these findings are related to the chemical structure of DNA bases.
细菌主要冷休克蛋白家族的特征是具有一段由65 - 75个氨基酸残基组成的保守序列,该序列形成一种三维结构,由五个β - 折叠片排列成β - 桶拓扑结构。来自大肠杆菌的CspA和来自枯草芽孢杆菌的CspB是这类蛋白质的典型代表成员。这些蛋白质的确切生物学作用仍不清楚;然而,它们被认为具有单链DNA结合活性。在本文中,我们报告了对CspA和CspB的单链DNA结合活性进行比较定量分析的结果。我们表明,尽管CspA和CspB在一级结构水平上具有高度同源性且三维结构非常相似,但它们具有不同的单链DNA结合特性。两种蛋白质都优先结合聚嘧啶单链DNA模板,但CspB与基于T的模板结合的亲和力比与基于U或C的单链DNA高一个数量级,而CspA与基于T、U或C的单链DNA结合的亲和力相当。它们在高离子强度下与单链DNA结合时也表现出异同。这些发现的结果与DNA碱基的化学结构有关。