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紫外共振拉曼光谱法测定蛋白质的酸变性:马肌红蛋白螺旋片段的选择性展开

UV resonance Raman determination of protein acid denaturation: selective unfolding of helical segments of horse myoglobin.

作者信息

Chi Z, Asher S A

机构信息

Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

Biochemistry. 1998 Mar 3;37(9):2865-72. doi: 10.1021/bi971161r.

Abstract

We have used UV resonance Raman spectroscopy to study the acid denaturation of horse heart aquometmyoglobin (Mb) between pH 7.5 and 1.5. Raman spectra excited at 206.5 nm are dominated by amide vibrations, which are analyzed by using a new methodology to quantitatively determine the Mb secondary structure. In contrast, the 229-nm Raman spectra are dominated by the Tyr and Trp Raman bands, which are analyzed to examine changes in Tyr and Trp environments, such as exposure to water, hydrogen bonding, and, for Trp, any alterations of the dihedral angle between the Trp ring and its linkage to the protein backbone. We uniquely determined which Mb alpha-helices melt by combining the amide, Tyr, and Trp Raman spectral information with heme absorption spectral information. We calculate that the Mb alpha-helical composition decreases from approximately 80% at neutral pH to approximately 19% below pH 3.5. The Trp Raman cross sections dramatically decrease at low pH to values which indicate that they are fully exposed to water; this result indicates that the A helix melts. The Tyr Raman bands are pH independent, which indicates that the G and H helices around the Tyr residues do not melt. The dramatic heme absorption acid denaturation changes indicate major alterations of the heme pocket and changes in heme binding. These results indicate that the A, B, C, D, E, and F helices melt in a concerted fashion, while the antiparallel G and H helices only partially melt.

摘要

我们利用紫外共振拉曼光谱研究了马心高铁肌红蛋白(Mb)在pH 7.5至1.5之间的酸变性。在206.5 nm激发的拉曼光谱以酰胺振动为主,通过使用一种新方法对其进行分析以定量确定Mb的二级结构。相比之下,229 nm的拉曼光谱以酪氨酸(Tyr)和色氨酸(Trp)的拉曼谱带为主,对其进行分析以研究Tyr和Trp环境的变化,例如与水的接触、氢键作用,对于Trp而言,还包括Trp环与其与蛋白质主链连接之间二面角的任何改变。我们通过将酰胺、Tyr和Trp拉曼光谱信息与血红素吸收光谱信息相结合,独特地确定了哪些Mbα螺旋会解链。我们计算得出,Mb的α螺旋组成从中性pH时的约80%降至pH 3.5以下时的约19%。在低pH下,Trp拉曼截面急剧下降至表明它们完全暴露于水的值;这一结果表明A螺旋解链。Tyr拉曼谱带与pH无关,这表明Tyr残基周围的G和H螺旋不解链。血红素吸收的酸变性显著变化表明血红素口袋发生了重大改变以及血红素结合发生了变化。这些结果表明,A、B、C、D、E和F螺旋以协同方式解链,而反平行的G和H螺旋仅部分解链。

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