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巴司星色氨酸突变体的折叠:折叠途径上初始疏水塌缩的证据。

Folding of tryptophan mutants of barstar: evidence for an initial hydrophobic collapse on the folding pathway.

作者信息

Nath U, Udgaonkar J B

机构信息

National Centre for Biological Sciences, TIFR Centre, P.O. Box 1234, Indian Institute of Science Campus, Bangalore 560012, India.

出版信息

Biochemistry. 1997 Jul 15;36(28):8602-10. doi: 10.1021/bi970426z.

Abstract

The contributions of the three tryptophan residues of barstar to the spectroscopic properties, stability, and folding of the protein have been studied by mutating two of the tryptophans, Trp38 and Trp44, individually as well as together, to phenylalanines, Phe. The three mutant proteins studied are shown to be similar to wt barstar in structure by activity measurements as well as by spectroscopic characterization. Fluorescence energy transfer between the tryptophans as well as quenching by their local structural environments complicates the analysis of the contributions of the individual tryptophans to the fluorescence of the wt protein, but it is demonstrated that Trp53, which is completely buried within the hydrophobic core, makes the dominant contribution to the fluorescence, while the fluorescence of Trp38 is largely quenched in the fully folded protein. GdnHCl- as well as temperature-induced equilibrium unfolding studies, using three different structural probes, indicate that W38FW44F, where both Trp38 and Trp44 have been removed, follows a two-state unfolding transition and is less stable than the wt barstar. The fluorescence-monitored folding and unfolding kinetics of W38FW44F have been studied in detail. W38FW44F folds 2-fold faster and unfolds 3-fold faster than wt barstar. A large fraction of the total fluorescence change that occurs during folding occurs in a burst phase within 4 ms after commencement of folding. A similar burst phase change in fluorescence, although to a smaller extent, is shown to occur during the folding of wt barstar. The results suggest that a very early folding intermediate accumulates within 4 ms of folding, and that this kinetic intermediate is sufficiently compact that Trp53, which is completely sequestered from solvent in the fully folded protein, is also significantly sequestered from solvent in this intermediate.

摘要

通过将巴尔斯塔蛋白(barstar)的三个色氨酸残基中的两个,即色氨酸38(Trp38)和色氨酸44(Trp44)分别以及一起突变为苯丙氨酸(Phe),研究了它们对该蛋白质的光谱性质、稳定性和折叠的贡献。通过活性测量以及光谱表征表明,所研究的三种突变蛋白在结构上与野生型巴尔斯塔蛋白相似。色氨酸之间的荧光能量转移以及它们局部结构环境的猝灭作用,使得分析单个色氨酸对野生型蛋白荧光的贡献变得复杂,但结果表明,完全埋藏在疏水核心内的色氨酸53(Trp53)对荧光起主要贡献,而在完全折叠的蛋白质中,色氨酸38的荧光在很大程度上被猝灭。使用三种不同结构探针进行的盐酸胍(GdnHCl)诱导以及温度诱导的平衡去折叠研究表明,在色氨酸38和色氨酸44都被去除的W38FW44F遵循两态去折叠转变,并且比野生型巴尔斯塔蛋白更不稳定。已详细研究了W38FW44F的荧光监测折叠和去折叠动力学。W38FW44F的折叠速度比野生型巴尔斯塔蛋白快2倍,去折叠速度快3倍。在折叠开始后4毫秒内的一个猝发阶段,发生了折叠过程中总荧光变化的很大一部分。尽管程度较小,但在野生型巴尔斯塔蛋白折叠过程中也显示出类似的荧光猝发阶段变化。结果表明,在折叠4毫秒内积累了一个非常早期的折叠中间体,并且这个动力学中间体足够紧密,以至于在完全折叠的蛋白质中与溶剂完全隔离的色氨酸53,在这个中间体中也与溶剂显著隔离。

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