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利用磁性和自然圆二色光谱对脾脏绿色血红素蛋白进行表征:髓过氧化物酶型活性位点的确凿证据。

Characterization of the spleen green hemeprotein with magnetic and natural circular dichroism spectroscopy: positive evidence for a myeloperoxidase-type active site.

作者信息

Sono M, Dawson J H, Ikeda-Saito M

出版信息

Biochim Biophys Acta. 1986 Sep 5;873(1):62-72. doi: 10.1016/0167-4838(86)90190-1.

Abstract

The green hemeprotein purified from bovine spleen has been characterized with magnetic and natural circular dichroism (MCD and CD) spectroscopy for the first time. The enzyme derivatives studied include the native high-spin ferric form and its high-spin chloride and low-spin cyanide and nitrite complexes, the ligand-free high-spin ferrous form and its low-spin CO adduct, and Compounds II (ferryl iron species) and III (dioxygen adduct). All these enzyme states exhibit MCD spectra that are considerably different from the spectra of analogous complexes of normal heme iron. In particular, the following distinctions have been observed. The sign of the derivative-shaped MCD bands of the high-spin ferric and Compound II forms in the Soret (380-500 nm) region and of the ferrous low-spin and Compound III forms in both the Soret and visible (500-700 nm) regions are opposite to and, except for the high-spin ferric form, are less symmetric than those seen for normal heme iron systems. MCD intensities in the Soret region for the high-spin ferrous and low-spin ferric derivatives are noticeably smaller than those of normal heme proteins by a factor of up to ten. Prominent MCD bands are seen around 450 and 630 nm for the green hemeprotein derivatives; these features are considerably red-shifted (30-50 nm) relative to the analogous transitions observed for normal heme proteins. In contrast to the aforementioned spectral differences, the MCD and CD spectra of the spleen green hemeprotein derivatives are essentially identical to those previously reported for several derivatives of another spectroscopically anomalous heme-type enzyme, myeloperoxidase. This provides strong evidence that the two enzymes have identical prosthetic groups and endogenous axial ligands coordinated to the central iron. The novel MCD features of the green proteins, taken together with previously reported spectroscopic results, are most consistent with the presence of a chlorin-type prosthetic group in both proteins. In addition, the CD spectral similarities suggest that the two green proteins have nearly identical active-site environments.

摘要

首次利用磁圆二色光谱(MCD)和天然圆二色光谱(CD)对从牛脾脏中纯化得到的绿色血红素蛋白进行了表征。所研究的酶衍生物包括天然的高自旋铁形式及其高自旋氯化物、低自旋氰化物和亚硝酸盐配合物,无配体的高自旋亚铁形式及其低自旋一氧化碳加合物,以及化合物II(高铁血红素物种)和化合物III(双氧加合物)。所有这些酶状态的MCD光谱与正常血红素铁类似配合物的光谱有很大不同。特别地,观察到以下差异。高自旋铁和化合物II形式在Soret(380 - 500 nm)区域的导数形状MCD带的符号,以及亚铁低自旋和化合物III形式在Soret和可见光(500 - 700 nm)区域的导数形状MCD带的符号与正常血红素铁系统的相反,并且除了高自旋铁形式外,对称性低于正常血红素铁系统。高自旋亚铁和低自旋铁衍生物在Soret区域的MCD强度比正常血红素蛋白的明显小,可达十倍。绿色血红素蛋白衍生物在450和630 nm左右出现明显的MCD带;相对于正常血红素蛋白观察到的类似跃迁,这些特征有相当大的红移(30 - 50 nm)。与上述光谱差异相反,脾脏绿色血红素蛋白衍生物的MCD和CD光谱与先前报道的另一种光谱异常的血红素型酶——髓过氧化物酶的几种衍生物的光谱基本相同。这提供了有力证据,表明这两种酶具有相同的辅基和与中心铁配位的内源性轴向配体。绿色蛋白的新颖MCD特征,与先前报道的光谱结果一起,最符合两种蛋白中均存在二氢卟吩型辅基的情况。此外,CD光谱的相似性表明这两种绿色蛋白具有几乎相同的活性位点环境。

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