Department of Infectious Disease, Faculty of Medicine, Imperial College London, London, W12 0NN, UK.
Single Molecule Imaging Group, MRC-London Institute of Medical Sciences, London, W12 0NN, UK.
Nat Commun. 2022 Oct 7;13(1):5921. doi: 10.1038/s41467-022-33503-6.
Resolution of Holliday junctions is a critical intermediate step of homologous recombination in which junctions are processed by junction-resolving endonucleases. Although binding and cleavage are well understood, the question remains how the enzymes locate their substrate within long duplex DNA. Here we track fluorescent dimers of endonuclease I on DNA, presenting the complete single-molecule reaction trajectory for a junction-resolving enzyme finding and cleaving a Holliday junction. We show that the enzyme binds remotely to dsDNA and then undergoes 1D diffusion. Upon encountering a four-way junction, a catalytically-impaired mutant remains bound at that point. An active enzyme, however, cleaves the junction after a few seconds. Quantitative analysis provides a comprehensive description of the facilitated diffusion mechanism. We show that the eukaryotic junction-resolving enzyme GEN1 also undergoes facilitated diffusion on dsDNA until it becomes located at a junction, so that the general resolution trajectory is probably applicable to many junction resolving enzymes.
解决 Holliday 连接点是同源重组的关键中间步骤,连接点由连接点解析内切酶进行处理。尽管结合和切割已经得到很好的理解,但问题仍然是酶如何在长双链 DNA 内定位其底物。在这里,我们在 DNA 上追踪内切酶 I 的荧光二聚体,呈现出用于寻找和切割 Holliday 连接点的连接点解析酶的完整单分子反应轨迹。我们表明,该酶远程结合到 dsDNA 上,然后进行 1D 扩散。遇到四链连接点时,催化失活的突变体仍会在该点结合。然而,活性酶在几秒钟后会切割连接点。定量分析提供了促进扩散机制的全面描述。我们表明,真核连接点解析酶 GEN1 也在 dsDNA 上经历促进扩散,直到它位于连接点,因此一般的解析轨迹可能适用于许多连接点解析酶。