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大肠杆菌 DNA 聚合酶 III 的持续前进夹β在溶液中是动态的。

Escherichia coli processivity clamp β from DNA polymerase III is dynamic in solution.

机构信息

Department of Chemistry and Chemical Biology, Northeastern University, Boston, Massachusetts 02115, United States.

出版信息

Biochemistry. 2011 Jul 5;50(26):5958-68. doi: 10.1021/bi200580b. Epub 2011 Jun 10.

Abstract

Escherichia coli DNA polymerase III is a highly processive replicase because of the presence of the β clamp protein that tethers DNA polymerases to DNA. The β clamp is a head-to-tail ring-shaped homodimer, in which each protomer contains three structurally similar domains. Although multiple studies have probed the functions of the β clamp, a detailed understanding of the conformational dynamics of the β clamp in solution is lacking. Here we used hydrogen exchange mass spectrometry to characterize the conformation and dynamics of the intact dimer β clamp and a variant form (I272A/L273A) with a weakened ability to dimerize in solution. Our data indicate that the β clamp is not a static closed ring but rather is dynamic in solution. The three domains exhibited different dynamics, though they share a highly similar tertiary structure. Domain I, which controls the opening of the clamp by dissociating from domain III, contained several highly flexible peptides that underwent partial cooperative unfolding (EX1 kinetics) with a half-life of ~4 h. The comparison between the β monomer variant and the wild-type β clamp showed that the β monomer was more dynamic. In the monomer, partial unfolding was much faster and additional regions of domain III also underwent partial unfolding with a half-life of ~1 h. Our results suggest that the δ subunit of the clamp loader may function as a "ring holder" to stabilize the transient opening of the β clamp, rather than as a "ring opener".

摘要

大肠杆菌 DNA 聚合酶 III 是一种高度连续的复制酶,这要归功于β 夹蛋白的存在,它将 DNA 聚合酶固定在 DNA 上。β 夹是一个头到尾的环形同源二聚体,每个单体包含三个结构相似的结构域。尽管有多项研究探讨了β 夹的功能,但对其在溶液中的构象动力学仍缺乏详细的了解。在这里,我们使用氢交换质谱法来表征完整二聚体β夹和一种变体(I272A/L273A)的构象和动力学,后者在溶液中聚合能力较弱。我们的数据表明,β 夹不是一个静态的封闭环,而是在溶液中是动态的。三个结构域表现出不同的动力学,尽管它们共享高度相似的三级结构。控制与结构域 III 解离以打开夹的结构域 I 包含几个高度灵活的肽段,它们经历部分协同展开(EX1 动力学),半衰期约为 4 小时。β 单体变体与野生型 β 夹的比较表明,β 单体更具动态性。在单体中,部分展开快得多,结构域 III 的其他区域也经历部分展开,半衰期约为 1 小时。我们的结果表明,夹载物的 δ 亚基可能作为“环持有者”发挥作用,以稳定 β 夹的瞬时打开,而不是作为“环开启者”。

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