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血红素蛋白的高压质子核磁共振研究。肌红蛋白、血红蛋白和辣根过氧化物酶血红素环境中压力诱导的结构变化。

High-pressure proton nuclear magnetic resonance studies of hemoproteins. Pressure-induced structural change in heme environments of myoglobin, hemoglobin, and horseradish peroxidase.

作者信息

Morishima I, Ogawa S, Yamada H

出版信息

Biochemistry. 1980 Apr 15;19(8):1569-75. doi: 10.1021/bi00549a006.

Abstract

Hyperfine shifted proton NMR spectra of metmyoglobin, methemoglobin, and their complexes with azide, imidazole, and cyanide as well as the spectrum of native horseradish peroxidase were obtained at high pressures up to 2000 atm with a specially designed high-pressure cell for 220-MHz superconducting NMR spectrometer. For the azide complexes of metmyoglobin, in all of which the iron atoms are in thermal spin equilibrium between high- and low-spin states, the increased pressure shifted their heme methyl proton signals to the upfield side. For the cyanide complexes of metmyoglobin and methemoglobin and for the fluoride complex of metmyoglobin, which are in purely low- and high-spin states, respectively, the spectra were almost insensitive to changes in pressure up to 2000 atm. The heme methyl proton signals of aquometmyoglobin, its formate complex, and horseradish peroxidase showed appreciable upfield shifts upon pressurization. These results were interpreted to indicate that the primary effect of pressure on the hemoprotein structure is to shift the spin equilibrium in favor of the low-spin form. Hemichrome formation of methemoglobin at high pressures was also observed, and the effect of pressure on the heme environmental structure of deoxyhemoglobin and deoxymyoglobin was also discussed.

摘要

使用专门为220兆赫超导核磁共振光谱仪设计的高压池,在高达2000个大气压的高压下,获得了高铁肌红蛋白、高铁血红蛋白及其与叠氮化物、咪唑和氰化物的复合物的超精细位移质子核磁共振光谱,以及天然辣根过氧化物酶的光谱。对于高铁肌红蛋白的叠氮复合物,其中所有铁原子都处于高自旋态和低自旋态之间的热自旋平衡,压力增加使它们的血红素甲基质子信号移向上场侧。对于分别处于纯低自旋态和高自旋态的高铁肌红蛋白和高铁血红蛋白的氰化物复合物以及高铁肌红蛋白的氟化物复合物,在高达2000个大气压的压力变化下,光谱几乎不敏感。水合高铁肌红蛋白及其甲酸盐复合物和辣根过氧化物酶的血红素甲基质子信号在加压时显示出明显的上场位移。这些结果被解释为表明压力对血红蛋白结构的主要影响是使自旋平衡向有利于低自旋形式的方向移动。还观察到了高铁血红蛋白在高压下形成高铁血红素,并讨论了压力对脱氧血红蛋白和脱氧肌红蛋白血红素环境结构的影响。

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