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MCM 干扰在爪蟾卵提取物中 DNA 复制的许可-可能是 MCM3 的 C 末端区域的作用。

MCM interference during licensing of DNA replication in Xenopus egg extracts-Possible Role of a C-terminal region of MCM3.

机构信息

a Department of Biological Sciences, Graduate School of Science , Osaka University , Machikaneyama 1-1, Toyonaka , Osaka , Japan.

出版信息

Cell Cycle. 2018;17(4):492-505. doi: 10.1080/15384101.2017.1415681. Epub 2018 Jan 30.

Abstract

The minichromosome maintenance (MCM) complex, consisting of six subunits, Mcm2-7, is loaded onto replication origins through loading factors (origin recognition complex [ORC], Cdc6, and Cdt1) and forms an MCM double hexamer that licenses the initiation of DNA replication. Previous studies with Xenopus egg extracts showed that loading factors, especially Cdc6, dissociate from chromatin on MCM loading, but the molecular mechanism and physiological significance remain largely unknown. Using a cell-free system for MCM loading onto plasmid DNA in Xenopus egg extracts, we found that MCM loaded onto DNA prevents DNA binding of the loading factors ORC, Cdc6, and Cdt1. We further report that a peptide of the C-terminal region of MCM3 (MCM3-C), previously implicated in the initial association with ORC/Cdc6 in budding yeast, prevents ORC/Cdc6/Cdt1 binding to DNA in the absence of MCM loading. ATP-γ-S suppresses inhibitory activities of both the MCM loaded onto DNA and the MCM3-C peptide. Other soluble factors in the extract, but neither MCM nor Cdt1, are required for the activity. Conservation of the amino acid sequences of MCM3-C and its activity in vertebrates implies a novel negative autoregulatory mechanism that interferes with MCM loading in the vicinity of licensed origins to ensure proper origin licensing.

摘要

微染色体维持 (MCM) 复合物由六个亚基组成,包括 Mcm2-7,通过加载因子(起始识别复合物 [ORC]、Cdc6 和 Cdt1)加载到复制起点,并形成允许 DNA 复制起始的 MCM 双六聚体。以前使用非洲爪蟾卵提取物的研究表明,加载因子,特别是 Cdc6,在 MCM 加载时从染色质上解离,但分子机制和生理意义在很大程度上仍然未知。我们使用非洲爪蟾卵提取物中用于将 MCM 加载到质粒 DNA 的无细胞系统,发现加载到 DNA 上的 MCM 可防止加载因子 ORC、Cdc6 和 Cdt1 与 DNA 结合。我们进一步报告,先前在芽殖酵母中与 ORC/Cdc6 初始关联的 MCM3 (MCM3-C)C 末端区域的肽,可防止 ORC/Cdc6/Cdt1 在没有 MCM 加载的情况下与 DNA 结合。ATP-γ-S 抑制 DNA 上加载的 MCM 和 MCM3-C 肽的抑制活性。提取物中的其他可溶性因子,但既不是 MCM 也不是 Cdt1,是该活性所必需的。MCM3-C 的氨基酸序列在脊椎动物中的保守性及其活性暗示了一种新的负反馈调节机制,该机制干扰了邻近许可起点的 MCM 加载,以确保适当的起点许可。

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本文引用的文献

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