首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >A unique DNA entry gate serves for regulated loading of the eukaryotic replicative helicase MCM2-7 onto DNA
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A unique DNA entry gate serves for regulated loading of the eukaryotic replicative helicase MCM2-7 onto DNA

机译:独特的DNA进入门可用于将真核复制解旋酶MCM2-7加载到DNA上

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The regulated loading of the replicative helicase minichromosome maintenance proteins 2-7 (MCM2-7) onto replication origins is a prerequisite for replication fork establishment and genomic stability. Origin recognition complex (ORC), Cdc6, and Cdt1 assemble two MCM2-7 hexamers into one double hexamer around dsDNA. Although the MCM2-7 hexamer can adopt a ring shape with a gap between Mcm2 and Mcm5, it is unknown which Mcm interface functions as the DNA entry gate during regulated helicase loading. Here, we establish that the Saccharomyces cerevisiae MCM2-7 hexamer assumes a closed ring structure, suggesting that helicase loading requires active ring opening. Using a chemical biology approach, we show that ORC-Cdc6-Cdt1-dependent helicase loading occurs through a unique DNA entry gate comprised of the Mcm2 and Mcm5 subunits. Controlled inhibition of DNA insertion triggers ATPase-driven complex disassembly in vitro, while in vivo analysis establishes that Mcm2/Mcm5 gate opening is essential for both helicase loading onto chromatin and cell cycle progression. Importantly, we demonstrate that the MCM2-7 helicase becomes loaded onto DNA as a single hexamer during ORC/Cdc6/Cdt1/MCM2-7 complex formation prior to MCM2-7 double hexamer formation. Our study establishes the existence of a unique DNA entry gate for regulated helicase loading, revealing key mechanisms in helicase loading, which has important implications for helicase activation.
机译:复制解旋酶微染色体维持蛋白2-7(MCM2-7)在复制起点上的调节加载是复制叉建立和基因组稳定性的先决条件。起源识别复合体(ORC),Cdc6和Cdt1将两个MCM2-7六聚体组装成围绕dsDNA的一个双六聚体。尽管MCM2-7六聚体可以采用在Mcm2和Mcm5之间具有间隙的环形,但尚不清楚在调节的解旋酶上样过程中,哪个Mcm接口充当DNA进入门。在这里,我们建立了酿酒酵母MCM2-7六聚体采取闭环结构,表明解旋酶加载需要主动开环。使用化学生物学方法,我们显示ORC-Cdc6-Cdt1依赖的解旋酶负载是通过由Mcm2和Mcm5亚基组成的独特DNA进入门发生的。 DNA插入的受控抑制在体外触发了ATPase驱动的复合物的分解,而体内分析表明,Mcm2 / Mcm5的门打开对于将解旋酶加载到染色质和细胞周期进程都是必不可少的。重要的是,我们证明了在MCM2-7双六聚体形成之前,ORC / Cdc6 / Cdt1 / MCM2-7复合体形成过程中,MCM2-7解旋酶以单个六聚体的形式加载到DNA上。我们的研究建立了一个独特的DNA入口门,用于调节解旋酶的负载,揭示了解旋酶负载的关键机制,这对解旋酶激活具有重要意义。

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