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马心脏肌红蛋白共振拉曼光谱中的低频振动。铁-配体和铁-氮振动模式。

Low-frequency vibrations in resonance Raman spectra of horse heart myoglobin. Iron-ligand and iron-nitrogen vibrational modes.

作者信息

Desbois A, Lutz M, Banerjee R

出版信息

Biochemistry. 1979 Apr 17;18(8):1510-8. doi: 10.1021/bi00575a019.

Abstract

The low-frequency regions (150--700 cm-1) of resonance Raman (RR) spectra of various complexes of oxidized and reduced horse heart myoglobin were examined by use of 441.6-nm excitation. In this frequency range, RR spectra show 10 bands common to all myoglobin derivatives (numbered here for convenience from I to X). Relative intensities of bands IV, V, and X constitute good indicators of the doming state of the heme and, consequently, of the spin state of the iron atom. An additional band is present for several complexes (fluorometmyoglobin, hydroxymetmyoglobin, azidometmyoglobin, and oxymyoglobin). Isotopic substitutions on the exogenous ligands and of the iron atom (56Fe leads to 54Fe) allow us to assign these additional lines to the stretching vibrations of the Fe-sixth ligand bond. Similarly, bands II are assigned to stretching vibrations of the Fe-N-(pyrrole) bonds. An assignment of bands VI to stretching vibrations of the Fe-Nepsilon(proximal histidine) bonds is also proposed. Mechanisms for the resonance enhancement of the main low-frequency bands are discussed on the basis of the excitation profiles and of the dispersion curves for depolarization ratios obtained for fluorometmyoglobin and hydroxymetmyoglobin.

摘要

利用441.6nm激发光,对氧化态和还原态马心肌红蛋白各种复合物的共振拉曼(RR)光谱的低频区域(150 - 700cm⁻¹)进行了研究。在此频率范围内,RR光谱显示出所有肌红蛋白衍生物共有的10条谱带(此处为方便起见编号为I至X)。谱带IV、V和X的相对强度是血红素穹顶状态的良好指标,因此也是铁原子自旋状态的良好指标。几种复合物(氟代高铁肌红蛋白、羟基高铁肌红蛋白、叠氮高铁肌红蛋白和氧合肌红蛋白)存在一条额外的谱带。对外源配体和铁原子进行同位素取代(⁵⁶Fe替换为⁵⁴Fe)使我们能够将这些额外的谱线归属于铁第六配体键的伸缩振动。同样,谱带II归属于Fe - N - (吡咯)键的伸缩振动。还提出将谱带VI归属于Fe - Nε(近端组氨酸)键的伸缩振动。基于氟代高铁肌红蛋白和羟基高铁肌红蛋白的激发轮廓和去极化率色散曲线,讨论了主要低频谱带的共振增强机制。

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