State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
School of Environment, Hangzhou Institute for Advanced Study, UCAS, Hangzhou 310024, China.
Nucleic Acids Res. 2023 Mar 21;51(5):2270-2283. doi: 10.1093/nar/gkad078.
The recombinase RecA/Rad51 ATPase family proteins catalyze paramount DNA strand exchange reactions that are critically involved in maintaining genome integrity. However, it remains unclear how DNA strand exchange proceeds when encountering RecA-free defects in recombinase nucleoprotein filaments. Herein, by designing a series of unique substrates (e.g. truncated or conjugated incoming single-stranded DNA, and extended donor double-stranded DNA) and developing a two-color alternating excitation-modified single-molecule real-time fluorescence imaging assay, we resolve the two key steps (donor strand separation and new base-pair formation) that are usually inseparable during the reaction, revealing a novel long-range flanking strand separation activity of synaptic RecA nucleoprotein filaments. We further evaluate the kinetics and free energetics of strand exchange reactions mediated by various substrates, and elucidate the mechanism of flanking strand separation. Based on these findings, we propose a potential fundamental molecular model involved in flanking strand separation, which provides new insights into strand exchange mechanism and homologous recombination.
RecA/Rad51 解旋酶家族蛋白催化至关重要的 DNA 链交换反应,这些反应对维持基因组完整性至关重要。然而,当重组酶核蛋白丝中遇到无 RecA 的缺陷时,DNA 链交换如何进行仍不清楚。在此,通过设计一系列独特的底物(例如,截断的或连接的进入单链 DNA,以及延伸的供体双链 DNA)并开发双色交替激发修饰的单分子实时荧光成像检测,我们解析了反应过程中通常无法分离的两个关键步骤(供体链分离和新碱基对形成),揭示了突触 RecA 核蛋白丝的新型长程侧翼链分离活性。我们进一步评估了各种底物介导的链交换反应的动力学和自由能,并阐明了侧翼链分离的机制。基于这些发现,我们提出了一个侧翼链分离的潜在基本分子模型,为链交换机制和同源重组提供了新的见解。