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DsbA的三个His32突变体的结构分析:支持His32在DsbA稳定性中的静电作用

Structural analysis of three His32 mutants of DsbA: support for an electrostatic role of His32 in DsbA stability.

作者信息

Guddat L W, Bardwell J C, Glockshuber R, Huber-Wunderlich M, Zander T, Martin J L

机构信息

Centre for Drug Design and Development, University of Queensland, Brisbane, Australia.

出版信息

Protein Sci. 1997 Sep;6(9):1893-900. doi: 10.1002/pro.5560060910.

Abstract

DsbA, a 21-kDa protein from Escherichia coli, is a potent oxidizing disulfide catalyst required for disulfide bond formation in secreted proteins. The active site of DsbA is similar to that of mammalian protein disulfide isomerases, and includes a reversible disulfide bond formed from cysteines separated by two residues (Cys30-Pro31-His32-Cys33). Unlike most protein disulfides, the active-site disulfide of DsbA is highly reactive and the oxidized form of DsbA is much less stable than the reduced form at physiological pH. His32, one of the two residues between the active-site cysteines, is critical to the oxidizing power of DsbA and to the relative instability of the protein in the oxidized form. Mutation of this single residue to tyrosine, serine, or leucine results in a significant increase in stability (of approximately 5-7 kcal/mol) of the oxidized His32 variants relative to the oxidized wild-type protein. Despite the dramatic changes in stability, the structures of all three oxidized DsbA His32 variants are very similar to the wild-type oxidized structure, including conservation of solvent atoms near the active-site residue, Cys30. These results show that the His32 residue does not exert a conformational effect on the structure of DsbA. The destabilizing effect of His32 on oxidized DsbA is therefore most likely electrostatic in nature.

摘要

DsbA是一种来自大肠杆菌的21 kDa蛋白质,是分泌蛋白中二硫键形成所需的一种高效氧化二硫催化剂。DsbA的活性位点与哺乳动物蛋白质二硫键异构酶的活性位点相似,包括由两个残基隔开的半胱氨酸形成的可逆二硫键(Cys30 - Pro31 - His32 - Cys33)。与大多数蛋白质二硫键不同,DsbA的活性位点二硫键具有高反应性,并且在生理pH下,DsbA的氧化形式比还原形式稳定性低得多。His32是活性位点半胱氨酸之间的两个残基之一,对DsbA的氧化能力以及蛋白质氧化形式的相对不稳定性至关重要。将这个单一残基突变为酪氨酸、丝氨酸或亮氨酸会导致氧化型His32变体相对于氧化型野生型蛋白质的稳定性显著增加(约5 - 7千卡/摩尔)。尽管稳定性发生了巨大变化,但所有三种氧化型DsbA His32变体的结构与野生型氧化结构非常相似,包括活性位点残基Cys30附近溶剂原子的保守性。这些结果表明,His32残基对DsbA的结构没有构象影响。因此,His32对氧化型DsbA的去稳定作用最有可能是静电性质的。

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