Ticau Simina, Friedman Larry J, Ivica Nikola A, Gelles Jeff, Bell Stephen P
Howard Hughes Medical Institute, Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Department of Biochemistry, Brandeis University, Waltham, MA 02454, USA.
Cell. 2015 Apr 23;161(3):513-525. doi: 10.1016/j.cell.2015.03.012. Epub 2015 Apr 16.
Loading of the ring-shaped Mcm2-7 replicative helicase around DNA licenses eukaryotic origins of replication. During loading, Cdc6, Cdt1, and the origin-recognition complex (ORC) assemble two heterohexameric Mcm2-7 complexes into a head-to-head double hexamer that facilitates bidirectional replication initiation. Using multi-wavelength single-molecule fluorescence to monitor the events of helicase loading, we demonstrate that double-hexamer formation is the result of sequential loading of individual Mcm2-7 complexes. Loading of each Mcm2-7 molecule involves the ordered association and dissociation of distinct Cdc6 and Cdt1 proteins. In contrast, one ORC molecule directs loading of both helicases in each double hexamer. Based on single-molecule FRET, arrival of the second Mcm2-7 results in rapid double-hexamer formation that anticipates Cdc6 and Cdt1 release, suggesting that Mcm-Mcm interactions recruit the second helicase. Our findings reveal the complex protein dynamics that coordinate helicase loading and indicate that distinct mechanisms load the oppositely oriented helicases that are central to bidirectional replication initiation.
环形Mcm2-7复制解旋酶在DNA周围的装载许可真核生物复制起点。在装载过程中,Cdc6、Cdt1和起点识别复合物(ORC)将两个异源六聚体Mcm2-7复合物组装成头对头的双六聚体,促进双向复制起始。利用多波长单分子荧光监测解旋酶装载事件,我们证明双六聚体的形成是单个Mcm2-7复合物顺序装载的结果。每个Mcm2-7分子的装载涉及不同的Cdc6和Cdt1蛋白的有序结合和解离。相比之下,一个ORC分子指导每个双六聚体中两个解旋酶的装载。基于单分子荧光共振能量转移,第二个Mcm2-7的到达导致快速形成双六聚体,这早于Cdc6和Cdt1的释放,表明Mcm-Mcm相互作用招募了第二个解旋酶。我们的研究结果揭示了协调解旋酶装载的复杂蛋白质动力学,并表明不同的机制装载对双向复制起始至关重要的反向解旋酶。