Shenzhen Key Laboratory for Systems Medicine in Inflammatory Diseases, School of Medicine, Shenzhen Campus of Sun Yat-sen University, Shenzhen, China.
State Key Laboratory of Protein and Plant Gene Research, School of Life Sciences, Peking University, Beijing, China.
Elife. 2023 Aug 3;12:RP87468. doi: 10.7554/eLife.87468.
MCM8 and MCM9 form a functional helicase complex (MCM8/9) that plays an essential role in DNA homologous recombination repair for DNA double-strand break. However, the structural characterization of MCM8/9 for DNA binding/unwinding remains unclear. Here, we report structures of the MCM8/9 complex using cryo-electron microscopy single particle analysis. The structures reveal that MCM8/9 is arranged into a heterohexamer through a threefold symmetry axis, creating a central channel that accommodates DNA. Multiple characteristic hairpins from the N-terminal oligosaccharide/oligonucleotide (OB) domains of MCM8/9 protrude into the central channel and serve to unwind the duplex DNA. When activated by HROB, the structure of MCM8/9's N-tier ring converts its symmetry from to with a conformational change that expands the MCM8/9's trimer interface. Moreover, our structural dynamic analyses revealed that the flexible C-tier ring exhibited rotary motions relative to the N-tier ring, which is required for the unwinding ability of MCM8/9. In summary, our structural and biochemistry study provides a basis for understanding the DNA unwinding mechanism of MCM8/9 helicase in homologous recombination.
MCM8 和 MCM9 形成一个功能齐全的解旋酶复合物(MCM8/9),在 DNA 双链断裂的同源重组修复中发挥着重要作用。然而,MCM8/9 与 DNA 结合/解旋的结构特征仍不清楚。在这里,我们使用冷冻电镜单颗粒分析报告了 MCM8/9 复合物的结构。这些结构表明,MCM8/9 通过一个三重对称轴排列成一个异六聚体,形成一个容纳 DNA 的中央通道。MCM8/9 的 N 端寡糖/寡核苷酸(OB)结构域的多个特征发夹突入中央通道,用于解旋双链 DNA。当被 HROB 激活时,MCM8/9 的 N 级环结构的对称性从 转换为 ,构象发生变化,扩大了 MCM8/9 的三聚体界面。此外,我们的结构动态分析显示,柔性 C 级环相对于 N 级环表现出旋转运动,这是 MCM8/9 解旋能力所必需的。总之,我们的结构和生化研究为理解同源重组中 MCM8/9 解旋酶的 DNA 解旋机制提供了基础。