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关于血红蛋白和金属卟啉中配体-铁相互作用的共振拉曼光谱研究。

Resonance Raman studies on the ligand-iron interactions in hemoproteins and metallo-porphyrins.

作者信息

Kitagawa T, Ozaki Y, Kyogoku Y

出版信息

Adv Biophys. 1978;11:153-96.

PMID:27953
Abstract

The resonance Raman spectra (RRS) were measured for various hemoproteins, as well as for free hemes, and analysed in terms of the interactions between the porphyrin ring and the heme iron and between the axial ligand and the heme iron. To establish vibrational assignments, the RRS of metallo-octae-thylporphyrin (M(OEP)), its 15N substituted and meso-deuterated derivatives were measured. It was found that the Raman line corresponding to the oxidation state marker of hemoproteins involves appreciable displacement of the pyrrolic nitrogen atoms toward metal ion but not that of methine bridges and that the frequencies of methine-bridge CC stretching vibrations are altered by the conjugation interaction between the porphyrin ring and the metal ion present. The prominent Raman lines of Ni(OEP) were assigned on the basis of the normal coordinate analysis. The Raman spectra of heme a bis-imidazole complex (Fe(A)(Im)2) in the presence of cyanide changed when pH was reduced to neutral. It implied formation of cyanhydrin at the peripheral formyl group of heme a. The Fe(A)(Im)2 formed an addition compound with NaHSO3 in a neutral solution but the added NaHSO3 was eliminated when the heme iron was reduced. The Raman spectra of hemoproteins were classified into four groups on the basis of the relative intensities and frequencies of the four key bands. It demonstrated the existence of two kinds of ferrous low-spin states. The difference between the two species was attributed to the difference in the nature of chemical bond between the heme iron and its sixth ligand (L). The Fe-L bonds of ferrous low-spin molecules in Groups A and C are mainly associated with the dz2(Fe)-lone pair and dz(Fe)-II(L) interactions, respectively. This interpretation of the Raman spectra appears consistent with the experimental facts that the ferrous low-spin molecules in Group C photodissociate upon illumination of light at the Soret band and also that the internal stretching frequencies of the sixth ligand are shifted to lower frequency upon coordination to the heme iron. The frequency of the oxidation state marker of reduced cytochrome P-450 (P-450cam) was unusually low in comparison with those of other hemoproteins. It was ascribed to delocalization of electrons from the thiolate anion to the porphyrin II*(ring) orbital through the pi-type molecular orbital (Eq.3). The RRS of reduced P-450cam.metyrapone adduct was quite close to that of reduced cytochrome b5. In conclusion, the Raman frequencies of hemoproteins may depend primarily upon the amount of electrons delocalized to the II* orbital of the porphyrin ring. The coordination of lone-pair electrons of the axial ligand to the iron dz2 orbital yields bond energy but scarcely affects the Raman frequencies. If the pi orbital of the axial ligand interacts with the iron dpi orbital, it perturbs the delocalization of the dpi(Fe) electrons to the II*(ring) orbital of porphyrin ring and thus affects the Raman frequencies.

摘要

测定了各种血红蛋白以及游离血红素的共振拉曼光谱(RRS),并根据卟啉环与血红素铁之间以及轴向配体与血红素铁之间的相互作用进行了分析。为了确定振动归属,测量了金属八乙基卟啉(M(OEP))及其15N取代和中位氘代衍生物的RRS。结果发现,对应于血红蛋白氧化态标记的拉曼线涉及吡咯氮原子向金属离子的明显位移,但次甲基桥没有,并且次甲基桥C-C伸缩振动的频率会因卟啉环与存在的金属离子之间的共轭相互作用而改变。基于简正坐标分析对Ni(OEP)的主要拉曼线进行了归属。当pH值降至中性时,氰化物存在下血红素a双咪唑配合物(Fe(A)(Im)2)的拉曼光谱发生了变化。这意味着在血红素a的外围甲酰基处形成了氰醇。Fe(A)(Im)2在中性溶液中与NaHSO3形成加合物,但当血红素铁被还原时,添加的NaHSO3会被消除。根据四个关键谱带的相对强度和频率,将血红蛋白的拉曼光谱分为四类。这证明了存在两种亚铁低自旋态。这两种物质之间的差异归因于血红素铁与其第六配体(L)之间化学键性质的差异。A组和C组中亚铁低自旋分子的Fe-L键分别主要与dz2(Fe)-孤对和dz(Fe)-II(L)相互作用有关。对拉曼光谱的这种解释似乎与以下实验事实一致:C组中的亚铁低自旋分子在Soret带光照下会发生光解离,并且第六配体的内部伸缩频率在与血红素铁配位后会移至较低频率。与其他血红蛋白相比,还原型细胞色素P-450(P-450cam)氧化态标记的频率异常低。这归因于电子从硫醇盐阴离子通过π型分子轨道离域到卟啉II*(环)轨道(式3)。还原型P-450cam.美替拉酮加合物的RRS与还原型细胞色素b5的RRS非常接近。总之,血红蛋白的拉曼频率可能主要取决于离域到卟啉环II轨道的电子数量。轴向配体的孤对电子与铁dz2轨道的配位产生键能,但几乎不影响拉曼频率。如果轴向配体的π轨道与铁dπ轨道相互作用,它会扰乱dπ(Fe)电子向卟啉环II(环)轨道的离域,从而影响拉曼频率。

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