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通过远紫外圆二色光谱的矩阵分析研究酸变性细胞色素c的构象多样性。

Conformational diversity of acid-denatured cytochrome c studied by a matrix analysis of far-UV CD spectra.

作者信息

Konno T

机构信息

National Institute for Physiological Science, Myodaiji, Okazaki, Japan.

出版信息

Protein Sci. 1998 Apr;7(4):975-82. doi: 10.1002/pro.5560070415.

Abstract

The singular value decomposition (SVD) analysis was applied to a large set of far-ultraviolet circular dichroism (far-UV CD) spectra (100-400 spectra) of horse heart cytochrome c (cyt c). The spectra were collected at pH 1.7-5.0 in (NH4)2SO4, sorbitol and 2,2,2-trifluoroethanol (TFE) solutions. The present purpose is to develop a rigorous matrix method applied to far-UV CD spectra to resolve in details conformational properties of proteins in the non-native (or denatured) regions. The analysis established that three basis spectral components are contained in a data set of difference spectra (referred to the spectrum of the native state) used here. By a further matrix transformation, any observed spectrum could be decomposed into fractions of the native (N), the molten-globule (MG), the highly denatured (D), and the alcohol-induced helical (H) spectral forms. This method could determine fractional transition curves of each conformer as a function of solution conditions, which gave the results consistent with denaturation curves of cyt c monitored by other spectroscopic methods. The results in sorbitol solutions, for example, suggested that the preferential hydration effect of the co-solvent stabilizes the MG conformer of cyt c. This report has found that the systematic SVD analysis of the far-UV CD spectra is a powerful tool for the conformational analysis of the non-native species of a protein when it is suitably supplemented with other experimental methods.

摘要

将奇异值分解(SVD)分析应用于大量马心细胞色素c(cyt c)的远紫外圆二色性(远紫外CD)光谱(100 - 400个光谱)。这些光谱是在pH值为1.7 - 5.0的硫酸铵、山梨醇和2,2,2 - 三氟乙醇(TFE)溶液中收集的。当前目的是开发一种应用于远紫外CD光谱的严格矩阵方法,以详细解析蛋白质在非天然(或变性)区域的构象性质。分析确定,此处使用的差光谱数据集(相对于天然状态的光谱)包含三个基础光谱成分。通过进一步的矩阵变换,任何观测光谱都可以分解为天然(N)、熔球态(MG)、高度变性(D)和醇诱导螺旋(H)光谱形式的分数。该方法可以确定每个构象体的分数转变曲线作为溶液条件的函数,其结果与通过其他光谱方法监测的细胞色素c的变性曲线一致。例如,在山梨醇溶液中的结果表明,共溶剂的优先水合作用稳定了细胞色素c的MG构象体。本报告发现,当适当地辅以其他实验方法时,对远紫外CD光谱进行系统的SVD分析是蛋白质非天然物种构象分析的有力工具。

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