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表面活性剂诱导的球状蛋白质二级结构变化:傅里叶变换红外光谱的傅里叶自去卷积

Secondary structural changes in globular protein induced by a surfactant: Fourier self-deconvolution of FT-IR spectra.

作者信息

Dev S B, Rha C K, Walder F

机构信息

Department of Nutrition and Food Science, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

J Biomol Struct Dyn. 1984 Oct;2(2):431-42. doi: 10.1080/07391102.1984.10507577.

Abstract

Conformational changes in ovalbumin, a globular protein, induced by an anionic surfactant, sodium dodecyl sulfate (SDS), have been monitored by an FT-IR spectrometer using ZnSe cylindrical internal reflection optics which allows high quality IR spectra to be obtained in water solution. The most notable change, on addition of SDS, occurs in the composite band of the Amide I absorption band and the vibrational frequency of the composite C = O bond shifts from 1639 cm-1 to 1652 cm-1. On the other hand, the position of the Amide II band remains fairly unchanged. Comparison of the various peak positions in the deconvoluted spectra for the native protein and the perturbed protein clearly shows the effect of SDS on the secondary structures of the protein. SDS unfolds the protein. It increases the helix content slightly. More importantly, it alerts the beta sheet structure, destroying it almost completely in the Amide I region, while retaining it in its neighbourhood. In the deconvoluted spectra of the perturbed protein, a band at 1531 cm-1 indicates generation of some beta turns. We used the second derivative of the deconvoluted spectra for fixing positions of minor peaks and shoulders. The results of this study indicate that the deconvolution of the normal IR spectra, consisting of composite bands, provides evidence for the specific secondary structures in a protein and for the way they are affected by changes in the environment, e.g., the addition of SDS. This makes it possible to relate conformational changes to specific secondary structures.

摘要

通过傅里叶变换红外光谱仪(FT-IR),利用硒化锌圆柱内反射光学器件监测了阴离子表面活性剂十二烷基硫酸钠(SDS)诱导的球状蛋白卵清蛋白的构象变化,该光学器件能在水溶液中获得高质量的红外光谱。加入SDS后,最显著的变化发生在酰胺I吸收带的复合带中,复合C = O键的振动频率从1639 cm-1移至1652 cm-1。另一方面,酰胺II带的位置基本保持不变。对天然蛋白和受扰蛋白的去卷积光谱中各个峰位置的比较清楚地显示了SDS对蛋白质二级结构的影响。SDS使蛋白质展开。它使螺旋含量略有增加。更重要的是,它改变了β折叠结构,在酰胺I区域几乎将其完全破坏,而在其附近区域保留了该结构。在受扰蛋白的去卷积光谱中,1531 cm-1处的一条带表明产生了一些β转角。我们使用去卷积光谱的二阶导数来确定小峰和肩峰的位置。这项研究的结果表明,由复合带组成的正常红外光谱的去卷积为蛋白质中的特定二级结构以及它们受环境变化(例如加入SDS)影响的方式提供了证据。这使得将构象变化与特定二级结构联系起来成为可能。

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