DNA Replication Group, Medical Research Council Clinical Sciences Centre, Imperial College London, London W12 0NN, United Kingdom.
Proc Natl Acad Sci U S A. 2009 Dec 1;106(48):20240-5. doi: 10.1073/pnas.0911500106. Epub 2009 Nov 12.
During pre-replication complex (pre-RC) formation, origin recognition complex (ORC), Cdc6, and Cdt1 cooperatively load the 6-subunit mini chromosome maintenance (MCM2-7) complex onto DNA. Loading of MCM2-7 is a prerequisite for DNA licensing that restricts DNA replication to once per cell cycle. During S phase MCM2-7 functions as part of the replicative helicase but within the pre-RC MCM2-7 is inactive. The organization of replicative DNA helicases before and after loading onto DNA has been studied in bacteria and viruses but not eukaryotes and is of major importance for understanding the MCM2-7 loading mechanism and replisome assembly. Lack of an efficient reconstituted pre-RC system has hindered the detailed mechanistic and structural analysis of MCM2-7 loading for a long time. We have reconstituted Saccharomyces cerevisiae pre-RC formation with purified proteins and showed efficient loading of MCM2-7 onto origin DNA in vitro. MCM2-7 loading was found to be dependent on the presence of all pre-RC proteins, origin DNA, and ATP hydrolysis. The quaternary structure of MCM2-7 changes during pre-RC formation: MCM2-7 before loading is a single hexamer in solution but is transformed into a double-hexamer during pre-RC formation. Using electron microscopy (EM), we observed that loaded MCM2-7 encircles DNA. The loaded MCM2-7 complex can slide on DNA, and sliding is not directional. Our results provide key insights into mechanisms of pre-RC formation and have important implications for understanding the role of the MCM2-7 in establishment of bidirectional replication forks.
在复制前复合物(pre-RC)形成过程中,起始识别复合物(ORC)、Cdc6 和 Cdt1 协同将 6 亚基微型染色体维持(MCM2-7)复合物加载到 DNA 上。MCM2-7 的加载是 DNA 许可的前提,限制了 DNA 复制在每个细胞周期中仅发生一次。在 S 期,MCM2-7 作为复制解旋酶的一部分发挥作用,但在 pre-RC 中,MCM2-7 是无活性的。在加载到 DNA 之前和之后复制 DNA 解旋酶的组织在细菌和病毒中得到了研究,但在真核生物中尚未研究过,这对于理解 MCM2-7 加载机制和复制体组装非常重要。缺乏有效的再构成 pre-RC 系统长期以来一直阻碍了对 MCM2-7 加载的详细机制和结构分析。我们使用纯化的蛋白质重新构成了酿酒酵母 pre-RC 的形成,并在体外显示了 MCM2-7 有效地加载到起始 DNA 上。MCM2-7 的加载依赖于所有 pre-RC 蛋白、起始 DNA 和 ATP 水解的存在。在 pre-RC 形成过程中,MCM2-7 的四级结构发生变化:在加载之前,MCM2-7 在溶液中是单个六聚体,但在 pre-RC 形成过程中转化为双六聚体。使用电子显微镜(EM),我们观察到加载的 MCM2-7 环绕 DNA。加载的 MCM2-7 复合物可以在 DNA 上滑动,并且滑动没有方向性。我们的结果提供了对 pre-RC 形成机制的关键见解,并对理解 MCM2-7 在建立双向复制叉中的作用具有重要意义。