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弧菌属细菌分泌折叠态二聚体形式的前气单胞菌溶素,无需形成二硫键。

Vibrio spp. secrete proaerolysin as a folded dimer without the need for disulphide bond formation.

作者信息

Hardie K R, Schulze A, Parker M W, Buckley J T

机构信息

Department of Biochemistry and Microbiology, University of Victoria, British Columbia, Canada.

出版信息

Mol Microbiol. 1995 Sep;17(6):1035-44. doi: 10.1111/j.1365-2958.1995.mmi_17061035.x.

Abstract

Proaerolysin is an extracellular dimeric protein that is secreted across the inner and outer membranes of Aeromonas spp. in separate steps. To investigate the role of protein folding in the second step, one or more cysteine residues were introduced and the mutant proaerolysins were expressed in Aeromonas hydrophila and Aeromonas salmonicida, as well as Vibrio cholerae. Replacing Met-41 with Cys resulted in expression of a protein that could form a dimer in which the monomers were linked together by a disulphide bridge. A double mutant was also made, in which Gly-202 and Ile-445 were replaced with cysteine in order to allow the formation of an intrachain disulphide bridge when the molecule was correctly folded. The M41C covalent dimer and G202C/I445C proaerolysin with the new intrachain bridge were both easily detected inside the bacteria, and they later appeared in the culture supernatants. Small amounts of incorrectly folded proaerolysin were also observed in the cells, but they were not secreted. We observed in the cells, but they were not secreted. We conclude that proaerolysin folds and dimerizes before being released from the cell, and that correct folding is a requirement for secretion to occur. The proton ionophore CCCP reduced release of the folded proteins. Unoxidized protein was secreted by cells grown in beta-mercaptoethanol and by a dsbA mutant of V. cholerae, indicating that disulphide bond formation may not be essential for release.

摘要

气单胞菌溶血素是一种细胞外二聚体蛋白,它通过不同步骤穿过气单胞菌属的内膜和外膜分泌。为了研究蛋白质折叠在第二步中的作用,引入了一个或多个半胱氨酸残基,并在嗜水气单胞菌、杀鲑气单胞菌以及霍乱弧菌中表达突变型气单胞菌溶血素。将甲硫氨酸-41替换为半胱氨酸导致一种蛋白质的表达,该蛋白质能够形成二聚体,其中单体通过二硫键连接在一起。还构建了一个双突变体,其中甘氨酸-202和异亮氨酸-445被替换为半胱氨酸,以便在分子正确折叠时形成链内二硫键。带有新链内桥的M41C共价二聚体和G202C/I445C气单胞菌溶血素在细菌内部都很容易被检测到,随后它们出现在培养上清液中。在细胞中也观察到少量错误折叠的气单胞菌溶血素,但它们没有被分泌。我们得出结论,气单胞菌溶血素在从细胞释放之前折叠并二聚化,并且正确折叠是分泌发生的必要条件。质子离子载体CCCP减少了折叠蛋白的释放。未氧化的蛋白由在β-巯基乙醇中生长的细胞以及霍乱弧菌的dsbA突变体分泌,这表明二硫键形成可能不是释放所必需的。

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