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蛋白质和某些模型化合物中酪氨酸残基拉曼光谱中850和830 cm-1处双峰的解读。

Interpretation of the doublet at 850 and 830 cm-1 in the Raman spectra of tyrosyl residues in proteins and certain model compounds.

作者信息

Siamwiza M N, Lord R C, Chen M C, Takamatsu T, Harada I, Matsuura H, Shimanouchi T

出版信息

Biochemistry. 1975 Nov 4;14(22):4870-6. doi: 10.1021/bi00693a014.

Abstract

The doublet at 850 and 830 cm-1 in the Raman spectra of proteins containing tyrosyl residues has been examined as to its origin and the relation of its components to the environment of the phenyl ring, the state of the phenolic hydroxyl group, and the conformation of the amino acid backbone. Raman spectral studies on numerous model molecules related to tyrosine, including certain deuterium derivatives, show that the doublet is due to Fermi resonance between the ring-breathing vibration and the overtone of an out-of-plane ring-bending vibration of the para-substituted benzenes. Further examination of the effects of pH and solvents on the Fermi doublet and of the crystallographic data demonstrates that the intensity ratio of the two components depends on changes in the relative frequencies of the two vibrations. These in turn are found to be sensitive to the nature of the hydrogen bonding of the phenolic hydroxyl group of its ionization, but much less so to the environment of the phenyl ring and the conformation of the amino acid backbone. By use of the relative intensities of the doublet in model systems where the phenolic hydroxyl group is strongly hydrogen-bonded, weakly hydrogen-bonded, free or ionized, the reported Raman intensities of the doublets observed in the Raman spectra of several proteins have been interpreted. The results are compared with those obtained by other techniques.

摘要

对含酪氨酰残基蛋白质的拉曼光谱中位于850和830厘米-1处的双峰,研究了其起源以及双峰各组分与苯环环境、酚羟基状态和氨基酸主链构象的关系。对众多与酪氨酸相关的模型分子(包括某些氘代衍生物)进行的拉曼光谱研究表明,该双峰是由于对位取代苯的环呼吸振动与面外环弯曲振动的泛频之间的费米共振所致。进一步研究pH值和溶剂对费米双峰的影响以及晶体学数据表明,双峰两个组分的强度比取决于两种振动相对频率的变化。进而发现,这些频率对酚羟基氢键性质或其电离敏感,但对苯环环境和氨基酸主链构象的敏感性要小得多。利用酚羟基强氢键、弱氢键、游离或电离的模型体系中双峰的相对强度,对几种蛋白质拉曼光谱中观察到的双峰的报道拉曼强度进行了解释。并将结果与其他技术所得结果进行了比较。

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