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Functional Conservation of β-Hairpin DNA Binding Domains in the Mcm Protein of Methanobacterium thermoautotrophicum and the Mcm5 protein of Saccharomyces cerevisiae

机译:嗜热自生甲烷菌Mcm蛋白和啤酒酵母Mcm5蛋白中β-发夹DNA结合域的功能保守

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摘要

Mcm proteins are an important family of evolutionarily conserved helicases required for DNA replication in eukaryotes. The eukaryotic Mcm complex consists of six paralogs that form a heterohexameric ring. Because the intact Mcm2-7 hexamer is inactive in vitro, it has been difficult to determine the precise function of the different subunits. The solved atomic structure of an archaeal minichromosome maintenance (MCM) homolog provides insight into the function of eukaryotic Mcm proteins. The N-terminal positively charged central channel in the archaeal molecule consists of β-hairpin domains essential for DNA binding in vitro. Eukaryotic Mcm proteins also have β-hairpin domains, but their function is unknown. With the archaeal atomic structure as a guide, yeast molecular genetics was used to query the function of the β-hairpin domains in vivo. A yeast mcm5 mutant with β-hairpin mutations displays defects in the G1/S transition of the cell cycle, the initiation phase of DNA replication, and in the binding of the entire Mcm2-7 complex to replication origins. A similar mcm4 mutation is synthetically lethal with the mcm5 mutation. Therefore, in addition to its known regulatory role, Mcm5 protein has a positive role in origin binding, which requires coordination by all six Mcm2-7 subunits in the hexamer.
机译:Mcm蛋白是真核生物中DNA复制所需的重要的进化保守解旋酶家族。真核Mcm复合体由六个异源物组成,形成异六聚体环。由于完整的Mcm2-7六聚体在体外无活性,因此很难确定不同亚基的精确功能。已解决的古细菌微染色体维持(MCM)同源物的原子结构提供了真核Mcm蛋白功能的见解。古细菌分子中的N末端带正电的中央通道由体外DNA结合所必需的β-发夹结构域组成。真核Mcm蛋白也具有β-发夹结构域,但其功能尚不清楚。以古细菌的原子结构为指导,使用酵母分子遗传学来查询体内β-发夹结构域的功能。具有β-发夹突变的酵母mcm5突变体在细胞周期的G1 / S过渡,DNA复制的起始阶段以及整个Mcm2-7复合体与复制起点的结合中显示出缺陷。相似的mcm4突变与mcm5突变在合成上致命。因此,除了其已知的调节作用外,Mcm5蛋白在起源结合中也具有积极作用,这需要六聚体中所有六个Mcm2-7亚基的配合。

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