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RecBCD 复合物解旋动力学模型及其对 Chi 识别的调控。

A model of DNA unwinding dynamics by the RecBCD complex and its regulation by Chi recognition.

机构信息

Key Laboratory of Soft Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

J Theor Biol. 2018 Jul 7;448:142-156. doi: 10.1016/j.jtbi.2018.04.014. Epub 2018 Apr 12.

Abstract

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.

摘要

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。

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