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大肠杆菌谷氧还蛋白3-谷胱甘肽混合二硫键复合物的核磁共振结构:对酶促机制的启示

NMR structure of Escherichia coli glutaredoxin 3-glutathione mixed disulfide complex: implications for the enzymatic mechanism.

作者信息

Nordstrand K, slund F, Holmgren A, Otting G, Berndt K D

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institute, S-171 77, Stockholm, Sweden.

出版信息

J Mol Biol. 1999 Feb 19;286(2):541-52. doi: 10.1006/jmbi.1998.2444.

Abstract

Glutaredoxins (Grxs) catalyze reversible oxidation/reduction of protein disulfide groups and glutathione-containing mixed disulfide groups via an active site Grx-glutathione mixed disulfide (Grx-SG) intermediate. The NMR solution structure of the Escherichia coli Grx3 mixed disulfide with glutathione (Grx3-SG) was determined using a C14S mutant which traps this intermediate in the redox reaction. The structure contains a thioredoxin fold, with a well-defined binding site for glutathione which involves two intermolecular backbone-backbone hydrogen bonds forming an antiparallel intermolecular beta-bridge between the protein and glutathione. The solution structure of E. coli Grx3-SG also suggests a binding site for a second glutathione in the reduction of the Grx3-SG intermediate, which is consistent with the specificity of reduction observed in Grxs. Molecular details of the structure in relation to the stability of the intermediate and the activity of Grx3 as a reductant of glutathione mixed disulfide groups are discussed. A comparison of glutathione binding in Grx3-SG and ligand binding in other members of the thioredoxin superfamily is presented, which illustrates the highly conserved intermolecular interactions in this protein family.

摘要

谷氧还蛋白(Grxs)通过活性位点谷氧还蛋白-谷胱甘肽混合二硫键(Grx-SG)中间体催化蛋白质二硫键基团和含谷胱甘肽的混合二硫键基团的可逆氧化/还原。利用C14S突变体确定了大肠杆菌Grx3与谷胱甘肽的混合二硫键(Grx3-SG)的核磁共振溶液结构,该突变体在氧化还原反应中捕获了这种中间体。该结构包含一个硫氧还蛋白折叠,具有一个明确的谷胱甘肽结合位点,该位点涉及两个分子间主链-主链氢键,在蛋白质和谷胱甘肽之间形成一个反平行的分子间β-桥。大肠杆菌Grx3-SG的溶液结构还表明,在Grx3-SG中间体还原过程中,第二个谷胱甘肽存在一个结合位点,这与在谷氧还蛋白中观察到的还原特异性一致。讨论了该结构与中间体稳定性以及Grx3作为谷胱甘肽混合二硫键基团还原剂活性相关的分子细节。还对Grx3-SG中的谷胱甘肽结合与硫氧还蛋白超家族其他成员中的配体结合进行了比较,这说明了该蛋白家族中高度保守的分子间相互作用。

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