Wells Jennifer N, Edwardes Lucy V, Leber Vera, Allyjaun Shenaz, Peach Matthew, Tomkins Joshua, Kefala-Stavridi Antonia, Faull Sarah V, Aramayo Ricardo, Pestana Carolina M, Ranjha Lepakshi, Speck Christian
DNA Replication Group, Institute of Clinical Sciences, Faculty of Medicine, Imperial College London, London, UK.
MRC Laboratory of Medical Sciences (LMS), London, UK.
Nat Commun. 2025 Jan 8;16(1):478. doi: 10.1038/s41467-024-55772-z.
Human DNA licensing initiates replication fork assembly and DNA replication. This reaction promotes the loading of the hMCM2-7 complex on DNA, which represents the core of the replicative helicase that unwinds DNA during S-phase. Here, we report the reconstitution of human DNA licensing using purified proteins. We showed that the in vitro reaction is specific and results in the assembly of high-salt resistant hMCM2-7 double-hexamers. With ATPγS, an hORC1-5-hCDC6-hCDT1-hMCM2-7 (hOCCM) assembles independent of hORC6, but hORC6 enhances double-hexamer formation. We determined the hOCCM structure, which showed that hORC-hCDC6 recruits hMCM2-7 via five hMCM winged-helix domains. The structure highlights how hORC1 activates the hCDC6 ATPase and uncovered an unexpected role for hCDC6 ATPase in complex disassembly. We identified that hCDC6 binding to hORC1-5 stabilises hORC2-DNA interactions and supports hMCM3-dependent recruitment of hMCM2-7. Finally, the structure allowed us to locate cancer-associated mutations at the hCDC6-hMCM3 interface, which showed specific helicase loading defects.
人类DNA许可启动复制叉组装和DNA复制。该反应促进hMCM2 - 7复合物加载到DNA上,hMCM2 - 7复合物是在S期解开DNA的复制解旋酶的核心。在此,我们报道了使用纯化蛋白对人类DNA许可进行的重组。我们表明体外反应具有特异性,并导致形成耐高盐的hMCM2 - 7双六聚体。使用ATPγS时,hORC1 - 5 - hCDC6 - hCDT1 - hMCM2 - 7(hOCCM)可独立于hORC6组装,但hORC6会增强双六聚体的形成。我们确定了hOCCM的结构,该结构表明hORC - hCDC6通过五个hMCM翼状螺旋结构域招募hMCM2 - 7。该结构突出了hORC1如何激活hCDC6 ATP酶,并揭示了hCDC6 ATP酶在复合物拆卸中的意外作用。我们发现hCDC6与hORC1 - 5的结合稳定了hORC2与DNA的相互作用,并支持hMCM3依赖的hMCM2 - 7招募。最后,该结构使我们能够在hCDC6 - hMCM3界面定位癌症相关突变,这些突变表现出特定的解旋酶加载缺陷。