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Interactions between the archaeal Cdc6 and MCM proteins modulate their biochemical properties.

机译:古细菌Cdc6和MCM蛋白之间的相互作用调节其生化特性。

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摘要

The origin recognition complex, Cdc6 and the minichromosome maintenance (MCM) complex play essential roles in the initiation of eukaryotic DNA replication. Homologs of these proteins may play similar roles in archaeal replication initiation. While the interactions among the eukaryotic initiation proteins are well documented, the protein-protein interactions between the archaeal proteins have not yet been determined. Here, an extensive structural and functional analysis of the interactions between the Methanothermobacter thermautotrophicus MCM and the two Cdc6 proteins (Cdc6-1 and -2) identified in the organism is described. The main contact between Cdc6 and MCM occurs via the N-terminal portion of the MCM protein. It was found that Cdc6-MCM interaction, but not Cdc6-DNA binding, plays the predominant role in regulating MCM helicase activity. In addition, the data showed that the interactions with MCM modulate the autophosphorylation of Cdc6-1 and -2. The results also suggest that MCM and DNA may compete for Cdc6-1 protein binding. The implications of these observations for the initiation of archaeal DNA replication are discussed.
机译:起源识别复合物Cdc6和微染色体维持(MCM)复合物在真核DNA复制的起始中起着重要作用。这些蛋白质的同源物可能在古细菌复制起始中起相似的作用。虽然真核生物起始蛋白之间的相互作用已有充分文献记载,但古细菌蛋白之间的蛋白-蛋白相互作用尚未确定。在这里,描述了对甲烷嗜热热菌自养营养菌MCM和生物体中鉴定的两个Cdc6蛋白(Cdc6-1和-2)之间相互作用的广泛结构和功能分析。 Cdc6和MCM之间的主要接触是通过MCM蛋白的N端部分发生的。发现Cdc6-MCM相互作用,但不是Cdc6-DNA结合,在调节MCM解旋酶活性中起主要作用。此外,数据显示与MCM的相互作用可调节Cdc6-1和-2的自磷酸化。结果还表明,MCM和DNA可能竞争Cdc6-1蛋白结合。讨论了这些观察结果对古细菌DNA复制的启动的影响。

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