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单个色氨酸残基对人碳酸酐酶II天然形式和变性形式荧光光谱的贡献。

Contribution of individual tryptophan residues to the fluorescence spectrum of native and denatured forms of human carbonic anhydrase II.

作者信息

Mårtensson L G, Jonasson P, Freskgård P O, Svensson M, Carlsson U, Jonsson B H

机构信息

Department of Biochemistry, Umeå University, Sweden.

出版信息

Biochemistry. 1995 Jan 24;34(3):1011-21. doi: 10.1021/bi00003a036.

Abstract

Measurements were made of fluorescence spectra produced by pseudo-wild-type human carbonic anhydrase II and mutants in which the tryptophan residues had been replaced by phenylalanine or cysteine residues. 2D NMR spectra of 15N-labeled proteins indicated that the mutations had essentially no long range effects on structure and that the pertubations of structure in the vicinity of the mutated Trp were small. The individual contributions of the seven tryptophan residues were deduced from measurements on native proteins and on proteins subjected to various denaturing conditions. Trp97 and Trp245 are the major fluorescence emitters in the native state, contributing 52% and 38%, respectively, to the total fluorescence intensity. Comparisons of the fluorescence yield of pseudo-wild-type human carbonic anhydrase II and mutant proteins also indicate net energy transfer from Trp16 to Trp5 and from Trp192 to Trp209. The fluorescence from Trp5 is efficiently quenched by His64. In addition, acrylamide quenching of fluorescence was used to probe the environment of tryptophans in proteins incubated in 0, 1.5, and 5 M guanidine hydrochloride. The results indicate that the part of the native protein that corresponds to beta-strands 3-7 forms a compact core in a molten globule intermediate.

摘要

对野生型人碳酸酐酶II及其色氨酸残基被苯丙氨酸或半胱氨酸残基取代的突变体所产生的荧光光谱进行了测量。15N标记蛋白质的二维核磁共振光谱表明,这些突变对结构基本上没有远程影响,并且突变的色氨酸附近的结构扰动很小。通过对天然蛋白质和经受各种变性条件的蛋白质的测量,推断出七个色氨酸残基的各自贡献。Trp97和Trp245是天然状态下的主要荧光发射体,分别占总荧光强度的52%和38%。野生型人碳酸酐酶II与突变体蛋白质荧光产率的比较也表明存在从Trp16到Trp5以及从Trp192到Trp209的净能量转移。Trp5的荧光被His64有效淬灭。此外,利用丙烯酰胺对荧光的淬灭来探测在0、1.5和5 M盐酸胍中孵育的蛋白质中色氨酸的环境。结果表明,天然蛋白质中对应于β链3-7的部分在熔球中间体中形成一个紧密的核心。

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