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高铁肌红蛋白氢氧化物及其他血红素衍生物中轴向配体键合和自旋态平衡的共振拉曼光谱研究。

Resonance Raman examination of axial ligand bonding and spin-state equilibria in metmyoglobin hydroxide and other heme derivatives.

作者信息

Asher S A, Schuster T M

出版信息

Biochemistry. 1979 Nov 27;18(24):5377-87. doi: 10.1021/bi00591a019.

Abstract

Resonance Raman spectra and excitation profiles have been obtained within the 5700-6300-A absorption band of purified sperm whale metmyoglobin hydroxide (MbIIIOH) solutions. A large enhancement occurs for a Raman peak at 490 cm-1 which is shown by isotopic substitution of 18O for 16O to be almost purely an Fe-O stretch. The Fe-O vibration in MbIIIOH occurs 5 cm-1 to lower energy than the corresponding vibration at 495 cm-1 in human methemoglobin hydroxide (HbIIIOH) [Asher, S., Vickery, L., Schuster, T., & Sauer, K. (1977) Biochemistry 16, 5849], reflecting differences in ligand bonding between Mb(III) and Hb(III). A larger frequency difference (10 cm-1) exists between MbIIIF and HbIIIF for the Fe-F stretch. We do not observe separate Fe-O or Fe-F stretches from the alpha and beta chains of either HbIIIOH or HbIIIF. Excitation profile measurements for MbIIOH indicate that the 5700-6300-A absorption band is composed of two separate absorption bands which result from a high- and a low-spin form of MbIIIOH. The spin-state-sensitive Raman band at 1608 cm-1 reflects the high-spin species and has an excitation profile maximum at about 6000 A while the low-spin Raman band occurs at 1644 cm-1 and shows an excitation profile maximum at 5800 A. The Fe-O stretch at 490 cm-1 has an excitation profile maximum at about 6000 A. The differences in frequency and Raman cross section between the Fe-X vibrations in MbIIIX and HbIIIX (X = OH-, F-) can be related to increases in the out-of-plane iron distance for the high-spin species of MbIIIX. The shift in the 1644-cm-1 MbIIIOH low-spin state Raman band indicative of the heme core size to 1636 cm-1 in HbIIIOH indicates a larger heme core size in HbIIIOH. Raman frequency shifts are used to estimate differences in bond strain energies between MbIIIX and HbIIIX (X = OH-, F-). Previous resonance Raman excitation profile data can be interpreted in terms of separate contributions from different spin-state species.

摘要

已在纯化的抹香鲸高铁肌红蛋白氢氧化物(MbIIIOH)溶液的5700 - 6300埃吸收带内获得共振拉曼光谱和激发轮廓。在490厘米⁻¹处的拉曼峰出现大幅增强,通过用¹⁸O替代¹⁶O的同位素取代表明其几乎纯粹是Fe - O伸缩振动。MbIIIOH中的Fe - O振动出现在比人高铁血红蛋白氢氧化物(HbIIIOH)中相应的495厘米⁻¹处的振动能量低5厘米⁻¹的位置[阿舍,S.,维克里,L.,舒斯特,T.,& 索尔,K.(1977年)《生物化学》16,5849],这反映了Mb(III)和Hb(III)之间配体键合的差异。对于Fe - F伸缩振动,MbIIIF和HbIIIF之间存在更大的频率差(10厘米⁻¹)。我们未观察到来自HbIIIOH或HbIIIF的α链和β链的单独的Fe - O或Fe - F伸缩振动。MbIIOH的激发轮廓测量表明,5700 - 6300埃吸收带由两个单独的吸收带组成,这是由MbIIIOH的高自旋和低自旋形式产生的。1608厘米⁻¹处的自旋态敏感拉曼带反映高自旋物种,其激发轮廓最大值在约6000埃处,而低自旋拉曼带出现在1644厘米⁻¹处,激发轮廓最大值在5800埃处。490厘米⁻¹处的Fe - O伸缩振动的激发轮廓最大值在约6000埃处。MbIIIX和HbIIIX(X = OH⁻,F⁻)中Fe - X振动在频率和拉曼截面方面的差异可与MbIIIX高自旋物种的面外铁距离增加相关。1644厘米⁻¹的MbIIIOH低自旋态拉曼带(指示血红素核心大小)向HbIIIOH中的1636厘米⁻¹的位移表明HbIIIOH中的血红素核心更大。拉曼频移用于估计MbIIIX和HbIIIX(X = OH⁻,F⁻)之间键应变能的差异。先前的共振拉曼激发轮廓数据可以根据不同自旋态物种的单独贡献来解释。

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