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通过核磁共振研究肝吸虫血红蛋白血红素腔的结构和电子性质:血红素同位素标记

Structural and electronic properties of the liver fluke hemoglobin heme cavity by nuclear magnetic resonance: hemin isotope labeling.

作者信息

Lecomte J T, La Mar G N, Smit J D, Winterhalter K H, Smith K M, Langry K C, Leung H K

机构信息

Department of Chemistry, University of California, Davis 95616.

出版信息

J Mol Biol. 1987 Sep 5;197(1):101-10. doi: 10.1016/0022-2836(87)90612-7.

Abstract

Reconstitution of liver fluke (Dicrocoelium dendriticum) apo-hemoglobin with hemins selectively deuterated at specific positions has permitted the assignment of several heme resonances in the proton nuclear magnetic resonance spectrum of the Met-aquo and Met-cyano forms of the holoprotein. It was established that in the Met-aquo form the meso protons resonate at positions characteristic of a six-co-ordinated in-plane iron. From this, we deduced that the Met-aquo species retains a bound water molecule at pH values as low as 4.5. The orientation of the proximal histidine imidazole ring with respect to the heme group in the cavity was determined through the identification of the heme methyl signals and the analysis of the hyperfine shift pattern in the Met-cyano hemoglobin proton nuclear magnetic resonance spectrum. Compared to sperm whale myoglobin, the heme appears to be rotated by 180 degrees about the alpha, gamma meso-axis. Protein isomers with the heme group in a reversed orientation were not detected, even shortly after reconstitution. In the Met-cyano form, the resonances most affected by the Bohr transition were shown to arise from the heme propionates.

摘要

用在特定位置选择性氘代的血红素对肝吸虫(枝双腔吸虫)脱辅基血红蛋白进行重组,使得在全蛋白的甲硫水合和甲硫氰基形式的质子核磁共振谱中能够确定几个血红素共振峰。已确定在甲硫水合形式中,中位质子在六配位平面内铁的特征位置处发生共振。由此,我们推断甲硫水合物种在低至4.5的pH值下仍保留一个结合水分子。通过血红素甲基信号的识别以及甲硫氰基血红蛋白质子核磁共振谱中超精细位移模式的分析,确定了腔中近端组氨酸咪唑环相对于血红素基团的取向。与抹香鲸肌红蛋白相比,血红素似乎绕α,γ中位轴旋转了180度。即使在重组后不久,也未检测到血红素基团取向相反的蛋白质异构体。在甲硫氰基形式中,受玻尔跃迁影响最大的共振峰显示来自血红素丙酸酯。

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