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荧光能量共振转移探测 HU 与 DNA 四链结的结合。

HU binding to a DNA four-way junction probed by Förster resonance energy transfer.

机构信息

Molecular Biology and Biochemistry Department, Molecular Biophysics Program, Wesleyan University, Middletown, Connecticut 06459-0175, United States.

出版信息

Biochemistry. 2011 Mar 8;50(9):1432-41. doi: 10.1021/bi1007589. Epub 2011 Feb 9.

Abstract

The Escherichia coli protein HU is a non-sequence-specific DNA-binding protein that interacts with DNA primarily through electrostatic interactions. In addition to nonspecific binding to linear DNA, HU has been shown to bind with nanomolar affinity to discontinuous DNA substrates, such as repair and recombination intermediates. This work specifically examines the HU-four-way junction (4WJ) interaction using fluorescence spectroscopic methods. The conformation of the junction in the presence of different counterions was investigated by Förster resonance energy transfer (FRET) measurements, which revealed an ion-type conformational dependence, where Na(+) yields the most stacked conformation followed by K(+) and Mg(2+). HU binding induces a greater degree of stacking in the Na(+)-stabilized and Mg(2+)-stabilized junctions but not the K(+)-stabilized junction, which is attributed to differences in the size of the ionic radii and potential differences in ion binding sites. Interestingly, junction conformation modulates binding affinity, where HU exhibits the lowest affinity for the Mg(2+)-stabilized form (24 μM(-1)), which is the least stacked conformation. Protein binding to a mixed population of open and stacked forms of the junction leads to nearly complete formation of a protein-stabilized stacked-X junction. These results strongly support a model in which HU binds to and stabilizes the stacked-X conformation.

摘要

大肠杆菌蛋白 HU 是一种非序列特异性的 DNA 结合蛋白,主要通过静电相互作用与 DNA 相互作用。除了与线性 DNA 的非特异性结合外,HU 还被证明以纳摩尔亲和力结合到不连续的 DNA 底物,如修复和重组中间体。这项工作专门使用荧光光谱法研究了 HU 四向连接(4WJ)的相互作用。通过Förster 共振能量转移(FRET)测量研究了不同抗衡离子存在下连接点的构象,揭示了离子类型的构象依赖性,其中 Na(+) 产生最堆叠的构象,其次是 K(+) 和 Mg(2+)。HU 结合诱导 Na(+)稳定和 Mg(2+)稳定连接点的更大程度的堆积,但不诱导 K(+)稳定连接点的堆积,这归因于离子半径的大小和离子结合位点的潜在差异。有趣的是,连接点的构象调节结合亲和力,其中 HU 对 Mg(2+)稳定形式(24 μM(-1))表现出最低的亲和力,这是最不堆叠的构象。蛋白质与连接点的开放和堆叠形式的混合种群结合导致几乎完全形成蛋白质稳定的堆叠-X 连接点。这些结果强烈支持 HU 结合并稳定堆叠-X 构象的模型。

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