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Non-essential MCM-related proteins mediate a response to DNA damage in the archaeon Methanococcus maripaludis

机译:非必需的 MCM 相关蛋白介导对古细菌 Methanococcus maripaludis 中 DNA 损伤的反应

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摘要

The single minichromosome maintenance (MCM) protein found in most archaea has been widely studied as a simplified model for the MCM complex that forms the catalytic core of the eukaryotic replicative helicase. Organisms of the order Methanococcales are unusual in possessing multiple MCM homologues. The Methanococcus maripaludis S2 genome encodes four MCM homologues, McmA-McmD. DNA helicase assays reveal that the unwinding activity of the three MCM-like proteins is highly variable despite sequence similarities and suggests additional motifs that influence MCM function are yet to be identified. While the gene encoding McmA could not be deleted, strains harbouring individual deletions of genes encoding each of the other MCMs display phenotypes consistent with these proteins modulating DNA damage responses. M. maripaludis S2 is the first archaeon in which MCM proteins have been shown to influence the DNA damage response.
机译:在大多数古细菌中发现的单个微染色体维持 (MCM) 蛋白已被广泛研究为形成真核复制解旋酶催化核心的 MCM 复合物的简化模型。甲烷球菌目的生物体在拥有多个MCM同系物方面是不寻常的。Methanococcus maripaludis S2 基因组编码四种 MCM 同系物 McmA-McmD。DNA 解旋酶测定表明,尽管序列相似,但三种 MCM 样蛋白的解旋活性变化很大,这表明影响 MCM 功能的其他基序尚未确定。虽然编码 McmA 的基因无法被删除,但携带编码其他每个 MCM 的基因的单独缺失的菌株显示出与这些调节 DNA 损伤反应的蛋白质一致的表型。M. maripaludis S2 是第一个证明 MCM 蛋白会影响 DNA 损伤反应的古细菌。

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