Laboratory of Bioinformatics and Protein Engineering, International Institute of Molecular and Cell Biology, ks. Trojdena 4, PL-02-109 Warsaw, Poland.
Nucleic Acids Res. 2012 Sep;40(16):8163-74. doi: 10.1093/nar/gks547. Epub 2012 Jun 20.
Exonuclease VII (ExoVII) is a bacterial nuclease involved in DNA repair and recombination that hydrolyses single-stranded DNA. ExoVII is composed of two subunits: large XseA and small XseB. Thus far, little was known about the molecular structure of ExoVII, the interactions between XseA and XseB, the architecture of the nuclease active site or its mechanism of action. We used bioinformatics methods to predict the structure of XseA, which revealed four domains: an N-terminal OB-fold domain, a middle putatively catalytic domain, a coiled-coil domain and a short C-terminal segment. By series of deletion and site-directed mutagenesis experiments on XseA from Escherichia coli, we determined that the OB-fold domain is responsible for DNA binding, the coiled-coil domain is involved in binding multiple copies of the XseB subunit and residues D155, R205, H238 and D241 of the middle domain are important for the catalytic activity but not for DNA binding. Altogether, we propose a model of sequence-structure-function relationships in ExoVII.
核酸外切酶 VII(ExoVII)是一种参与 DNA 修复和重组的细菌核酸酶,可水解单链 DNA。ExoVII 由两个亚基组成:大亚基 XseA 和小亚基 XseB。迄今为止,人们对 ExoVII 的分子结构、XseA 和 XseB 之间的相互作用、核酸酶活性位点的结构或其作用机制知之甚少。我们使用生物信息学方法预测了 XseA 的结构,结果显示它由四个结构域组成:N 端 OB 折叠结构域、中间假定的催化结构域、卷曲螺旋结构域和短的 C 端片段。通过对大肠杆菌来源的 XseA 进行一系列缺失和定点突变实验,我们确定 OB 折叠结构域负责 DNA 结合,卷曲螺旋结构域参与与多个 XseB 亚基的结合,而中间结构域的残基 D155、R205、H238 和 D241 对于催化活性很重要,但对于 DNA 结合则不重要。总之,我们提出了 ExoVII 序列-结构-功能关系的模型。