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Regulated Eukaryotic DNA Replication Origin Firing with Purified Proteins

机译:纯化蛋白调控的真核DNA复制起点

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摘要

Eukaryotic cells initiate DNA replication from multiple origins, which must be tightly regulated to promote precise genome duplication in every cell cycle. To accomplish this, initiation is partitioned into two temporally discrete steps: a double hexameric MCM complex is first loaded at replication origins during G1 phase, and then converted to the active CMG (Cdc45, MCM, GINS) helicase during S phase. Here we describe the reconstitution of budding yeast DNA replication initiation with 16 purified replication factors, made from 42 polypeptides. Origin-dependent initiation recapitulates regulation seen in vivo. Cyclin dependent kinase (CDK) inhibits MCM loading by phosphorylating the origin recognition complex (ORC) and promotes CMG formation by phosphorylating Sld2 and Sld3. Dbf4 dependent kinase (DDK) promotes replication by phosphorylating MCM, and can act either before or after CDK. These experiments define the minimum complement of proteins, protein kinase substrates and co-factors required for regulated eukaryotic DNA replication.
机译:真核细胞可从多个来源启动DNA复制,必须对其进行严格调节以促进每个细胞周期中精确的基因组复制。为此,将启动过程分为两个时间上不连续的步骤:在G1阶段,将双六聚体MCM复合体首先加载到复制起点,然后在S阶段,将其转换为活性CMG(Cdc45,MCM,GINS)解旋酶。在这里,我们描述了由42种多肽制成的16种纯化复制因子对发芽酵母DNA复制起始的重构。起源依赖性起始概括了体内观察到的调节。细胞周期蛋白依赖性激酶(CDK)通过使起源识别复合物(ORC)磷酸化来抑制MCM负载,并通过使Sld2和Sld3磷酸化来促进CMG的形成。 Dbf4依赖性激酶(DDK)通过使MCM磷酸化来促进复制,并且可以在CDK之前或之后起作用。这些实验确定了调节的真核DNA复制所需的蛋白质,蛋白质激酶底物和辅因子的最小互补。

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