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乳酸:细胞色素c氧化还原酶中的黄素和血红素结构:一项共振拉曼研究。

Flavin and heme structures in lactate:cytochrome c oxidoreductase: a resonance Raman study.

作者信息

Desbois A, Tegoni M, Gervais M, Lutz M

机构信息

Laboratoire de Biophysique, Institut de Biologie Physico-Chimique, Paris, France.

出版信息

Biochemistry. 1989 Oct 3;28(20):8011-22. doi: 10.1021/bi00446a007.

Abstract

Resonance Raman spectra of Hansenula anomala L-lactate:cytochrome c oxidoreductase (or flavocytochrome b2), of its cytochrome b2 core, and of a bis(imidazole) iron-protoporphyrin complex were obtained at the Soret preresonance from the oxidized and reduced forms. Raman contributions from both the isoalloxazine ring of flavin mononucleotide (FMN) and the heme b2 were observed in the spectra of oxidized flavocytochrome b2. Raman diagrams showing frequency differences of selected FMN modes between aqueous and proteic environments were drawn for various flavoproteins. These diagrams were closely similar for flavocytochrome b2 and for flavodoxins. This showed that the FMN structure must be very similar in both types of proteins, despite their very different proteic pockets. However, the electron density at this macrocycle was found to be higher in flavocytochrome b2 than in these electron transferases. No significant difference was observed between the heme structures in flavocytochrome b2 and in cytochrome b2 core. The porphyrin center-N(pyrrole) distances in the oxidized and reduced heme b2 were estimated to be 1.990 and 2.022 A from frequencies of porphyrin skeletal modes, respectively. The frequency of the vinyl stretching mode of protoporphyrin was found to be very affected in resonance Raman spectra of flavocytochrome b2 and of cytochrome b2 core (1634-1636 cm-1) relative to those observed in the spectra of iron-protoporphyrin [bis(imidazole)] complexes (1620 cm-1). These specificities were interpreted as reflecting a near coplanarity of the vinyl groups of heme b2 with the pyrrole rings to which they are attached. The low-frequency regions of resonance Raman indicated that the iron atoms of the four hemes b2 are in the porphyrin plane whatever their oxidation state. The histidine-Fe-histidine symmetric stretching mode was located at 205 cm-1 in the spectra of flavocytochrome b2 and of cytochrome b2 core. It was insensitive to the iron oxidation state and indicated strong Fe-His bonds in both states.

摘要

异常汉逊酵母L-乳酸:细胞色素c氧化还原酶(或黄素细胞色素b2)、其细胞色素b2核心以及双(咪唑)铁原卟啉配合物的共振拉曼光谱是在索雷特预共振条件下从氧化态和还原态获得的。在氧化型黄素细胞色素b2的光谱中观察到了黄素单核苷酸(FMN)的异咯嗪环和血红素b2的拉曼贡献。针对各种黄素蛋白绘制了显示水性和蛋白质环境中选定FMN模式频率差异的拉曼图。黄素细胞色素b2和黄素氧还蛋白的这些图非常相似。这表明尽管这两种蛋白质的蛋白质口袋非常不同,但FMN结构在这两种蛋白质中一定非常相似。然而,发现黄素细胞色素b2中该大环处的电子密度高于这些电子转移酶中的电子密度。在黄素细胞色素b2和细胞色素b2核心中的血红素结构之间未观察到显著差异。根据卟啉骨架模式的频率,氧化型和还原型血红素b2中的卟啉中心 - N(吡咯)距离分别估计为1.990 Å和2.022 Å。相对于在铁原卟啉[双(咪唑)]配合物的光谱中观察到的频率(1620 cm-1),发现原卟啉的乙烯基伸缩模式频率在黄素细胞色素b2和细胞色素b2核心的共振拉曼光谱中受到很大影响(1634 - 1636 cm-1)。这些特异性被解释为反映了血红素b2的乙烯基与它们所连接的吡咯环近乎共面。共振拉曼的低频区域表明,无论其氧化态如何,四个血红素b2的铁原子都在卟啉平面内。组氨酸 - 铁 - 组氨酸对称伸缩模式在黄素细胞色素b2和细胞色素b2核心的光谱中位于205 cm-1处。它对铁的氧化态不敏感,表明在两种状态下铁 - 组氨酸键都很强。

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