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Mcm10通过刺激CMG复制解旋酶来调节DNA复制延伸。

Mcm10 regulates DNA replication elongation by stimulating the CMG replicative helicase.

作者信息

Lõoke Marko, Maloney Michael F, Bell Stephen P

机构信息

Howard Hughes Medical Institute, Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139 USA.

Microbiology Graduate Program, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139 USA.

出版信息

Genes Dev. 2017 Feb 1;31(3):291-305. doi: 10.1101/gad.291336.116.

Abstract

Activation of the Mcm2-7 replicative DNA helicase is the committed step in eukaryotic DNA replication initiation. Although Mcm2-7 activation requires binding of the helicase-activating proteins Cdc45 and GINS (forming the CMG complex), an additional protein, Mcm10, drives initial origin DNA unwinding by an unknown mechanism. We show that Mcm10 binds a conserved motif located between the oligonucleotide/oligosaccharide fold (OB-fold) and A subdomain of Mcm2. Although buried in the interface between these domains in Mcm2-7 structures, mutations predicted to separate the domains and expose this motif restore growth to conditional-lethal mutant cells. We found that, in addition to stimulating initial DNA unwinding, Mcm10 stabilizes Cdc45 and GINS association with Mcm2-7 and stimulates replication elongation in vivo and in vitro. Furthermore, we identified a lethal allele of that stimulates initial DNA unwinding but is defective in replication elongation and CMG binding. Our findings expand the roles of Mcm10 during DNA replication and suggest a new model for Mcm10 function as an activator of the CMG complex throughout DNA replication.

摘要

Mcm2 - 7复制性DNA解旋酶的激活是真核生物DNA复制起始过程中的关键步骤。尽管Mcm2 - 7的激活需要解旋酶激活蛋白Cdc45和GINS结合(形成CMG复合物),但另一种蛋白质Mcm10通过未知机制驱动起始点DNA的初始解旋。我们发现Mcm10结合位于Mcm2的寡核苷酸/寡糖折叠(OB折叠)和A亚结构域之间的一个保守基序。尽管在Mcm2 - 7结构中该基序埋藏于这些结构域之间的界面处,但预测可分离这些结构域并暴露该基序的突变可使条件致死突变细胞恢复生长。我们发现,除了刺激初始DNA解旋外,Mcm10还能稳定Cdc45和GINS与Mcm2 - 7的结合,并在体内和体外刺激复制延伸。此外,我们鉴定出一个致死等位基因,它能刺激初始DNA解旋,但在复制延伸和CMG结合方面存在缺陷。我们的研究结果扩展了Mcm10在DNA复制过程中的作用,并提出了一个新模型,即Mcm10在整个DNA复制过程中作为CMG复合物的激活剂发挥功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a850/5358725/043669959626/291f01.jpg

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