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通过设计 DNA 分叉底物和选择用于解旋酶预加载的核苷酸类似物来优化 CMG 解旋酶和 CMG 依赖性复制分析。

Optimizing CMG helicase and CMG-dependent replication assays by designing DNA fork substrates and choosing nucleotide analogues for helicase preloading.

机构信息

Laboratory of DNA Replication, The Rockefeller University, New York, NY, United States.

Laboratory of DNA Replication, The Rockefeller University, New York, NY, United States; Howard Hughes Medical Institute at Rockefeller University, New York, NY, United States.

出版信息

Methods Enzymol. 2022;672:173-202. doi: 10.1016/bs.mie.2022.02.023. Epub 2022 Mar 25.

Abstract

The replication machinery that synthesizes new copies of chromosomal DNA is located at the junction where double-stranded DNA is separated into its two strands. This replication fork DNA structure is at the heart of most assays involving DNA helicases. The helicase enzyme unwinds the replication fork structure into two single-stranded templates which are converted into two daughter duplexes by other proteins, including DNA polymerases. In eukaryotes, the CMG (Cdc45/Mcm2-7/GINS) helicase plays the pivotal role of unwinding the parental duplex DNA and at the same time interacts with numerous other proteins, including the leading strand polymerase, Pol ɛ. This chapter first describes how we design and prepare synthetic replication forks used in our CMG-related assays. Then we describe how to load CMG onto the fork. The Mcm2-7 motor subunits of CMG form a closed ring, as do all cellular replicative helicases, that encircles ssDNA for helicase function. Thus, the first step in these assays is the loading of CMG onto the fork DNA, followed by DNA unwinding and replication. We explain protocols for different strategies of preloading CMG onto the DNA fork using different ATP analogues. Additionally, the presence of Mcm10, an intimate partner of CMG, affects how CMG is preloaded onto a fork substrate.

摘要

复制新的染色体 DNA 所需的复制机制位于双链 DNA 分离成两条单链的连接处。这种复制叉 DNA 结构是大多数涉及 DNA 解旋酶的测定的核心。解旋酶酶将复制叉结构解开成两条单链模板,然后其他蛋白质(包括 DNA 聚合酶)将其转化为两条双链子体。在真核生物中,CMG(Cdc45/Mcm2-7/GINS)解旋酶起着解开亲本双链 DNA 的关键作用,同时与许多其他蛋白质相互作用,包括前导链聚合酶 Pol ɛ。本章首先描述了我们如何设计和准备用于 CMG 相关测定的合成复制叉。然后,我们描述了如何将 CMG 加载到叉上。CMG 的 Mcm2-7 马达亚基形成一个封闭的环,就像所有细胞复制解旋酶一样,该环环绕 ssDNA 以发挥解旋酶的功能。因此,这些测定中的第一步是将 CMG 加载到叉 DNA 上,然后进行 DNA 解旋和复制。我们解释了使用不同的 ATP 类似物将 CMG 预加载到 DNA 叉上的不同策略的方案。此外,CMG 的亲密伙伴 Mcm10 的存在会影响 CMG 如何预加载到叉底物上。

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