Yu You, Wang Juncheng, Liu Kaixian, Zheng Zhi, Arter Meret, Claeys Bouuaert Corentin, Pu Stephen, Patel Dinshaw J, Keeney Scott
Structural Biology Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Centre for Infection Immunity and Cancer (IIC), Zhejiang University-University of Edinburgh Institute, Zhejiang University School of Medicine, Haining, China.
Nat Struct Mol Biol. 2025 Jan;32(1):113-124. doi: 10.1038/s41594-024-01382-8. Epub 2024 Sep 20.
DNA double-strand breaks that initiate meiotic recombination are formed by the topoisomerase-relative enzyme Spo11, supported by conserved auxiliary factors. Because high-resolution structural data have not been available, many questions remain about the architecture of Spo11 and its partners and how they engage with DNA. We report cryo-electron microscopy structures at up to 3.3-Å resolution of DNA-bound core complexes of Saccharomyces cerevisiae Spo11 with Rec102, Rec104 and Ski8. In these structures, monomeric core complexes make extensive contacts with the DNA backbone and with the recessed 3'-OH and first 5' overhanging nucleotide, establishing the molecular determinants of DNA end-binding specificity and providing insight into DNA cleavage preferences in vivo. The structures of individual subunits and their interfaces, supported by functional data in yeast, provide insight into the role of metal ions in DNA binding and uncover unexpected structural variation in homologs of the Top6BL component of the core complex.
引发减数分裂重组的DNA双链断裂由拓扑异构酶相关酶Spo11形成,并由保守的辅助因子支持。由于尚未获得高分辨率的结构数据,关于Spo11及其伙伴的结构以及它们如何与DNA结合仍存在许多问题。我们报告了酿酒酵母Spo11与Rec102、Rec104和Ski8结合的DNA核心复合物的低温电子显微镜结构,分辨率高达3.3埃。在这些结构中,单体核心复合物与DNA主链以及凹陷的3'-OH和第一个5'突出核苷酸广泛接触,确定了DNA末端结合特异性的分子决定因素,并深入了解了体内DNA切割偏好。单个亚基及其界面的结构,辅以酵母中的功能数据,深入了解了金属离子在DNA结合中的作用,并揭示了核心复合物Top6BL组分同源物中意外的结构变异。