Key Laboratory of Soft Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
J Theor Biol. 2018 Jul 7;448:142-156. doi: 10.1016/j.jtbi.2018.04.014. Epub 2018 Apr 12.
The Escherichia coli RecBCD enzyme is a heterotrimeric helicase-nuclease complex responsible for processing of double-stranded DNA breaks for repair by homologous recombination. It is a highly processive, duplex unwinding and degrading motor, with its activities being regulated by the octameric recombination hotspot, Chi, which is read as a single-stranded DNA sequence. Here, a model is presented for DNA unwinding by the RecBCD complex and its regulation by Chi recognition. With the model we study analytically the dynamics of DNA unwinding of both wild-type RecBCD and mutant RecBCD with the motor function of RecD being inactivated by mutagenesis, giving quantitative explanations of the available single-molecule experimental data. The peculiar features of RecBCD such as large variations of DNA unwinding speed of individual enzymes, sensitivity of unwinding speed of a RecBCD molecule on the change of environment, two translocase or helicase activities of RecBC and RecD, etc., are explained. Furthermore, predicted results are presented.
大肠杆菌 RecBCD 酶是一种异源三聚体解旋酶-核酸酶复合物,负责双链 DNA 断裂的处理,以便通过同源重组进行修复。它是一种高度连续的、双链解旋和降解的分子马达,其活性受到八聚体重组热点 Chi 的调节,Chi 被读取为单链 DNA 序列。在这里,提出了 RecBCD 复合物的 DNA 解旋模型及其对 Chi 识别的调控。通过该模型,我们对野生型 RecBCD 和突变型 RecBCD 的 DNA 解旋动力学进行了分析,其中 RecD 的马达功能通过突变失活,对现有的单分子实验数据进行了定量解释。RecBCD 的特殊性质,如单个酶的 DNA 解旋速度的大变化、RecBCD 分子的解旋速度对环境变化的敏感性、RecBC 和 RecD 的两种转位酶或解旋酶活性等,都得到了解释。此外,还提出了预测结果。