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细胞色素c过氧化物酶及其中间体的共振拉曼研究。化合物ES中Fe(IV)=O键的存在及血红素连接的电离。

Resonance Raman study on cytochrome c peroxidase and its intermediate. Presence of the Fe(IV) = O bond in compound ES and heme-linked ionization.

作者信息

Hashimoto S, Teraoka J, Inubushi T, Yonetani T, Kitagawa T

出版信息

J Biol Chem. 1986 Aug 25;261(24):11110-8.

PMID:3015957
Abstract

Resonance Raman spectra of ferrous and ferric cytochrome c peroxidase and Compound ES and their pH dependences were investigated in resonance with Soret band. The Fe(IV) = O stretching Raman line of Compound ES was assigned to a broad band around 767 cm-1, which was shifted to 727 cm-1 upon 18O substitution. The 18O-isotopic frequency shift was recognized for Compound ES derived in H218O, but not in H216O. This clearly indicated occurrence of an oxygen exchange between the Fe(IV) = O heme and bulk water. The Fe(IV) = O stretching Raman band was definitely more intense and of higher frequency in D2O than in H2O as in Compound II of horseradish peroxidase, but in contrast with this its frequency was unaltered between pH 4 and 11. The Fe(II)-histidine stretching Raman line was assigned on the basis of the frequency shift observed for 54Fe isotopic substitution. From the intensity analysis of this band, the pKa of the heme-linked ionization of ferrocytochrome c peroxidase was determined to be 7.3. The Raman spectrum of ferricytochrome c peroxidase strongly suggested that the heme is placed under an equilibrium between the 5- and 6-coordinate high-spin structures. At neutral pH it is biased to the 5-coordinate structure, but at the acidic side of the transition of pKa = 5.5 the 6-coordinate heme becomes dominant. F- was bound to the heme iron at pH 6, but Cl- was bound only at acidic pH. Acidification by HNO3, H2SO4, CH3COOH, HBr, or HI resulted in somewhat different populations of the 5- and 6-coordinate forms when they were compared at pH 4.3. Accordingly, it is inferred that a water molecule which is suggested to occupy the sixth coordination position of the heme iron is not coordinated to the heme iron at pH 6 but that protonation of the pKa = 5.5 residue induces an appreciable structural change, allowing the coordination of the water molecule to the heme iron.

摘要

研究了亚铁和高铁细胞色素c过氧化物酶、化合物ES的共振拉曼光谱及其与Soret带共振时的pH依赖性。化合物ES的Fe(IV)=O伸缩拉曼线被指定为767 cm-1附近的一个宽带,在18O取代后移至727 cm-1。在H218O中衍生的化合物ES可观察到18O同位素频移,而在H216O中则未观察到。这清楚地表明Fe(IV)=O血红素与大量水之间发生了氧交换。与辣根过氧化物酶的化合物II一样,化合物ES的Fe(IV)=O伸缩拉曼带在D2O中肯定比在H2O中更强烈且频率更高,但与此相反,其频率在pH 4至11之间未发生变化。Fe(II)-组氨酸伸缩拉曼线是根据54Fe同位素取代观察到的频移来指定的。通过对该谱带的强度分析,确定亚铁细胞色素c过氧化物酶血红素连接电离的pKa为7.3。高铁细胞色素c过氧化物酶的拉曼光谱强烈表明,血红素处于5配位和6配位高自旋结构之间的平衡状态。在中性pH下,它偏向于5配位结构,但在pKa = 5.5转变的酸性一侧,6配位血红素占主导。F-在pH 6时与血红素铁结合,但Cl-仅在酸性pH时结合。当在pH 4.3进行比较时,用HNO3、H2SO4、CH3COOH、HBr或HI酸化会导致5配位和6配位形式的比例略有不同。因此,可以推断,在pH 6时,被认为占据血红素铁第六配位位置的水分子未与血红素铁配位,但pKa = 5.5残基的质子化会引起明显的结构变化,从而使水分子能够与血红素铁配位。

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