DNA Replication Group, Institute of Clinical Sciences, Faculty of Medicine, Imperial College London, London W12 0NN, United Kingdom.
Medical Research Council London Institute of Medical Sciences, London W12 0NN, United Kingdom.
Proc Natl Acad Sci U S A. 2017 Nov 7;114(45):E9529-E9538. doi: 10.1073/pnas.1712537114. Epub 2017 Oct 25.
During replication initiation, the core component of the helicase-the Mcm2-7 hexamer-is loaded on origin DNA as a double hexamer (DH). The two ring-shaped hexamers are staggered, leading to a kinked axial channel. How the origin DNA interacts with the axial channel is not understood, but the interaction could provide key insights into Mcm2-7 function and regulation. Here, we report the cryo-EM structure of the Mcm2-7 DH on dsDNA and show that the DNA is zigzagged inside the central channel. Several of the Mcm subunit DNA-binding loops, such as the oligosaccharide-oligonucleotide loops, helix 2 insertion loops, and presensor 1 (PS1) loops, are well defined, and many of them interact extensively with the DNA. The PS1 loops of Mcm 3, 4, 6, and 7, but not 2 and 5, engage the lagging strand with an approximate step size of one base per subunit. Staggered coupling of the two opposing hexamers positions the DNA right in front of the two Mcm2-Mcm5 gates, with each strand being pressed against one gate. The architecture suggests that lagging-strand extrusion initiates in the middle of the DH that is composed of the zinc finger domains of both hexamers. To convert the Mcm2-7 DH structure into the Mcm2-7 hexamer structure found in the active helicase, the N-tier ring of the Mcm2-7 hexamer in the DH-dsDNA needs to tilt and shift laterally. We suggest that these N-tier ring movements cause the DNA strand separation and lagging-strand extrusion.
在复制起始时,解旋酶的核心组件——Mcm2-7 六聚体作为双六聚体(DH)加载到起始 DNA 上。两个环形六聚体交错排列,导致轴向通道扭曲。目前尚不清楚起始 DNA 与轴向通道的相互作用方式,但这种相互作用可以为 Mcm2-7 的功能和调节提供关键见解。在这里,我们报告了 Mcm2-7 DH 在双链 DNA 上的冷冻电镜结构,并显示 DNA 在中央通道内呈之字形。几个 Mcm 亚基 DNA 结合环,如寡糖-寡核苷酸环、螺旋 2 插入环和前传感器 1(PS1)环,都得到了很好的定义,并且它们中的许多与 DNA 广泛相互作用。Mcm3、4、6 和 7 的 PS1 环,但不是 2 和 5,与滞后链结合,每个亚基的大致步长为一个碱基。两个相对的六聚体的交错耦合将 DNA 定位在两个 Mcm2-Mcm5 门的正前方,每根链都被压在一个门的前面。该结构表明,滞后链的挤出起始于由两个六聚体的锌指结构域组成的 DH 的中间。为了将 Mcm2-7 DH 结构转换为活性解旋酶中发现的 Mcm2-7 六聚体结构,DH-DNA 中的 Mcm2-7 六聚体的 N 层环需要倾斜并侧向移动。我们认为这些 N 层环的运动导致了 DNA 链的分离和滞后链的挤出。