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二聚体界面处的静电相互作用稳定了大肠杆菌β滑动夹。

Electrostatic Interactions at the Dimer Interface Stabilize the E. coli β Sliding Clamp.

作者信息

Purohit Anirban, England Jennifer K, Douma Lauren G, Tondnevis Farzaneh, Bloom Linda B, Levitus Marcia

机构信息

School of Molecular Sciences and Biodesign Institute, Arizona State University, Tempe, Arizona.

Department of Biochemistry and Molecular Biology, The Genetics Institute, University of Florida, Gainesville, Florida.

出版信息

Biophys J. 2017 Aug 22;113(4):794-804. doi: 10.1016/j.bpj.2017.06.057.

Abstract

Sliding clamps are ring-shaped oligomeric proteins that encircle DNA and associate with DNA polymerases for processive DNA replication. The dimeric Escherichia coli β-clamp is closed in solution but must adopt an open conformation to be assembled onto DNA by a clamp loader. To determine what factors contribute to the stability of the dimer interfaces in the closed conformation and how clamp dynamics contribute to formation of the open conformation, we identified conditions that destabilized the dimer and measured the effects of these conditions on clamp dynamics. We characterized the role of electrostatic interactions in stabilizing the β-clamp interface. Increasing salt concentration results in decreased dimer stability and faster subunit dissociation kinetics. The equilibrium dissociation constant of the dimeric clamp varies with salt concentration as predicted by simple charge-screening models, indicating that charged amino acids contribute to the remarkable stability of the interface at physiological salt concentrations. Mutation of a charged residue at the interface (Arg-103) weakens the interface significantly, whereas effects are negligible when a hydrophilic (Ser-109) or a hydrophobic (Ile-305) amino acid is mutated instead. It has been suggested that clamp opening by the clamp loader takes advantage of spontaneous opening-closing fluctuations at the clamp's interface, but our time-resolved fluorescence and fluorescence correlation experiments rule out conformational fluctuations that lead to a significant fraction of open states.

摘要

滑动夹是环形寡聚蛋白,其环绕DNA并与DNA聚合酶结合以进行持续性DNA复制。二聚体大肠杆菌β-滑动夹在溶液中呈闭合状态,但必须采用开放构象才能由夹装载器组装到DNA上。为了确定哪些因素有助于闭合构象中二聚体界面的稳定性,以及滑动夹动力学如何有助于开放构象的形成,我们确定了使二聚体不稳定的条件,并测量了这些条件对滑动夹动力学的影响。我们表征了静电相互作用在稳定β-滑动夹界面中的作用。盐浓度增加导致二聚体稳定性降低和亚基解离动力学加快。二聚体滑动夹的平衡解离常数随盐浓度变化,如简单电荷屏蔽模型所预测,表明带电荷的氨基酸有助于在生理盐浓度下界面具有显著的稳定性。界面处带电荷残基(Arg-103)的突变会显著削弱界面,而当亲水(Ser-109)或疏水(Ile-305)氨基酸发生突变时,影响可忽略不计。有人提出夹装载器使滑动夹打开是利用了滑动夹界面处自发的开闭波动,但我们的时间分辨荧光和荧光相关实验排除了导致相当一部分开放状态的构象波动。

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