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通过定点自旋标记和时域电子顺磁共振研究配体诱导的铁肠杆菌素受体FepA的构象变化。

Ligand-induced conformational change in the ferric enterobactin receptor FepA as studied by site-directed spin labeling and time-domain ESR.

作者信息

Klug C S, Eaton S S, Eaton G R, Feix J B

机构信息

Biophysics Research Institute, Medical College of Wisconsin, Milwaukee 53226, USA.

出版信息

Biochemistry. 1998 Jun 23;37(25):9016-23. doi: 10.1021/bi980144e.

Abstract

A mutant of the ferric enterobactin receptor, FepA, containing a valine to cysteine (V338C) substitution was made and the purified protein selectively modified with a sulfhydryl-specific nitroxide spin label. In reconstituted liposomes, interaction of the attached spin label with a combination of water-soluble and lipid-soluble relaxation agents indicated that the V338C site was located in the polar headgroup region of the membrane, approximately 1.5-4.5 A above the phosphate groups of the lipids. Binding of the ligand, ferric enterobactin (FeEnt), to the purified spin-labeled protein produced a significant decrease in both the rotational freedom and accessibility of the nitroxide, indicating the formation of new structural contacts between the spin label and either the protein or the bound ligand. Electron spin-echo (ESE) measurements of the nitroxide phase-memory relaxation rate in the presence and absence of bound ligand showed substantial dipolar coupling between the Fe3+ of FeEnt and the spin label and provided an iron-nitroxide distance estimate in the range of 20-30 A. We conclude that the ligand-induced changes in spin label motion and accessibility are due to new tertiary contacts with the protein and not to direct contact with the ligand. These studies suggest that V338C may occupy a hinge region connecting the ligand binding surface loop to the beta-barrel and provide the strongest evidence to date of an in vitro ligand-induced conformational change in FepA.

摘要

构建了铁载体肠杆菌素受体FepA的一个突变体,其含有缬氨酸到半胱氨酸(V338C)的替换,并使用巯基特异性氮氧化物自旋标记对纯化的蛋白质进行了选择性修饰。在重构脂质体中,附着的自旋标记与水溶性和脂溶性弛豫剂组合的相互作用表明,V338C位点位于膜的极性头部区域,在脂质磷酸基团上方约1.5 - 4.5埃处。配体铁载体肠杆菌素(FeEnt)与纯化的自旋标记蛋白的结合导致氮氧化物的旋转自由度和可及性均显著降低,表明自旋标记与蛋白质或结合的配体之间形成了新的结构接触。在存在和不存在结合配体的情况下对氮氧化物相记忆弛豫速率进行的电子自旋回波(ESE)测量显示,FeEnt的Fe3 +与自旋标记之间存在大量偶极耦合,并给出了铁 - 氮氧化物距离估计值在20 - 30埃范围内。我们得出结论,配体诱导的自旋标记运动和可及性变化是由于与蛋白质形成了新的三级接触,而不是与配体直接接触。这些研究表明,V338C可能占据连接配体结合表面环与β桶的铰链区域,并提供了迄今为止关于FepA中体外配体诱导构象变化的最有力证据。

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