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以变性的无序异构体组成为特征的水蛭素解折叠。

Unfolding of hirudin characterized by the composition of denatured scrambled isomers.

作者信息

Bulychev A, Chang J Y

机构信息

Research Center for Protein Chemistry, Institute of Molecular Medicine, The University of Texas, Houston 77030, USA.

出版信息

J Protein Chem. 1999 Oct;18(7):771-8. doi: 10.1023/a:1020681518265.

Abstract

The native core structure of hirudin, a thrombin specific inhibitor, contains 24 hydrogen bonds, two stretches of beta-sheet and three disulfide bonds. Hirudin unfolds in the presence of denaturant and thiol catalyst by shuffling its native disulfide bonds and converting to scrambled structures that consist of 11 identified isomers. The composition of scrambled isomers, which characterizes the structure of denatured hirudin, varies as a function of denaturing conditions. The unfolding pathway of hirudin has been constructed by quantitative analysis of scrambled isomers unfolded under increasing concentrations of various denaturants. The results demonstrate a progressive expansion of the polypeptide chain and the existence of a structurally defined stable intermediate along the pathway of unfolding.

摘要

水蛭素是一种凝血酶特异性抑制剂,其天然核心结构包含24个氢键、两段β折叠片层和三个二硫键。在变性剂和硫醇催化剂存在的情况下,水蛭素通过改组其天然二硫键并转化为由11种已鉴定异构体组成的混乱结构而展开。表征变性水蛭素结构的混乱异构体的组成随变性条件而变化。通过对在各种变性剂浓度增加的情况下展开的混乱异构体进行定量分析,构建了水蛭素的展开途径。结果表明,多肽链逐渐伸展,并且在展开途径中存在一个结构明确的稳定中间体。

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