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Efficient expression and purification of human replication fork-stabilizing factor, Claspin, from mammalian cells: DNA-binding activity and novel protein interactions

机译:从哺乳动物细胞中高效表达和纯化人类复制叉稳定因子Claspin:DNA结合活性和新型蛋白质相互作用

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摘要

Purification of recombinant proteins of a large size often poses problems of instability or low expression in bacterial or insect cells. Here, we established a method for a high-level expression of large-sized recombinant proteins in mammalian cells and subsequent purification of the full-length proteins. We applied this method to express human Claspin and Tim-Tipin complex, which play important roles in replication checkpoint responses as fork-stabilizing factors, and successfully purified them in functional forms in amount sufficient for enzymatic characterization. Purified Claspin behaves as a monomer and binds preferentially to fork-like DNA. Over-expression of tagged Claspin in mammalian cells facilitated the detection of its interacting factors. Claspin interacts with many factors involved in checkpoint regulation and replication fork machinery, including ATR, ATM, Chk1, Tim, MCM4, MCM10, Cdc45, DNA polymerases alpha, delta, epsilon and Cdc7 kinase. We will discuss the potential implication of these findings in architecture of replication fork. We will also discuss the advantage of this system for purification and characterization of those proteins that are large and have been difficult to deal with.
机译:纯化大尺寸重组蛋白通常会引起细菌或昆虫细胞不稳定或表达低的问题。在这里,我们建立了一种在哺乳动物细胞中高水平表达大型重组蛋白并随后纯化全长蛋白的方法。我们应用此方法来表达人类Claspin和Tim-Tipin复合物,它们在复制检查点响应中作为叉稳定因子发挥重要作用,并以足以进行酶促表征的功能形式成功纯化了它们。纯化的Claspin表现为单体,并优先与叉状DNA结合。标记的Claspin在哺乳动物细胞中的过表达促进了其相互作用因子的检测。 Claspin与检查点调节和复制叉机制中涉及的许多因素相互作用,包括ATR,ATM,Chk1,Tim,MCM4,MCM10,Cdc45,DNA聚合酶α,δ,ε和Cdc7激酶。我们将讨论复制叉体系结构中这些发现的潜在含义。我们还将讨论该系统在纯化和表征大而难以处理的蛋白质方面的优势。

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