Structural Biology Program, Van Andel Institute, Grand Rapids, MI, USA.
Howard Hughes Medical Institute, Chevy Chase, MD, USA.
Nat Commun. 2020 Feb 4;11(1):688. doi: 10.1038/s41467-020-14577-6.
High-resolution structures have not been reported for replicative helicases at a replication fork at atomic resolution, a prerequisite to understanding the unwinding mechanism. The eukaryotic replicative CMG (Cdc45, Mcm2-7, GINS) helicase contains a Mcm2-7 motor ring, with the N-tier ring in front and the C-tier motor ring behind. The N-tier ring is structurally divided into a zinc finger (ZF) sub-ring followed by the oligosaccharide/oligonucleotide-binding (OB) fold ring. Here we report the cryo-EM structure of CMG on forked DNA at 3.9 Å, revealing that parental DNA enters the ZF sub-ring and strand separation occurs at the bottom of the ZF sub-ring, where the lagging strand is blocked and diverted sideways by OB hairpin-loops of Mcm3, Mcm4, Mcm6, and Mcm7. Thus, instead of employing a specific steric exclusion process, or even a separation pin, unwinding is achieved via a "dam-and-diversion tunnel" mechanism that does not require specific protein-DNA interaction. The C-tier motor ring contains spirally configured PS1 and H2I loops of Mcms 2, 3, 5, 6 that translocate on the spirally-configured leading strand, and thereby pull the preceding DNA segment through the diversion tunnel for strand separation.
高分辨率结构尚未在原子分辨率下报道复制叉处的复制解旋酶,这是理解解旋机制的前提。真核复制 CMG(Cdc45、Mcm2-7、GINS)解旋酶包含 Mcm2-7 分子马达环,其中 N 层环在前,C 层分子马达环在后。N 层环在结构上分为锌指(ZF)亚环,其后是寡糖/寡核苷酸结合(OB)折叠环。我们在此报道了在 3.9 Å分辨率下 CMG 在分叉 DNA 上的冷冻电镜结构,揭示了亲本 DNA 进入 ZF 亚环,且链分离发生在 ZF 亚环底部,滞后链在此处被 Mcm3、Mcm4、Mcm6 和 Mcm7 的 OB 发夹环阻挡并侧向转移。因此,解旋不是通过特定的空间排斥过程,甚至不是通过分离销来实现的,而是通过一种不需要特定蛋白质-DNA 相互作用的“坝和分流隧道”机制来实现的。C 层分子马达环包含 Mcm2、3、5、6 的 PS1 和 H2I 螺旋环,它们在螺旋状的前导链上移位,从而将前面的 DNA 片段通过分流隧道拉动进行链分离。