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亚硝基血红蛋白反应中的光谱动力学异质性。

Spectral-kinetic heterogeneity in reactions of nitrosyl hemoglobin.

作者信息

Salhany J M, Ogawa S, Shulman R G

出版信息

Proc Natl Acad Sci U S A. 1974 Sep;71(9):3359-62. doi: 10.1073/pnas.71.9.3359.

Abstract

When NO replaces CO in hemoglobin A in the presence of inositol hexaphosphate, the time course is heterogeneous in contrast to stripped hemoglobin A, where it is homogeneous. If nitrosyl hemoglobin is mixed with inositol hexaphosphate in the stopped-flow apparatus, an extra spectral change is observed which is the cause of the spectral-kinetic heterogeneity in the CO replacement reaction. At wavelengths isosbestic for this extra spectral change, the time courses show an accelerating rate of CO dissociation. On the other hand, the same reaction for NES-des-Arg hemoglobin (hemoglobin reacted with N-ethylmaleimide and carboxypeptidase B) in the presence of inositol hexaphosphate is homogeneous and slow, and shows isosbesty. High-resolution nuclear magnetic resonance spectra indicate that adult nitrosyl hemoglobin in the presence of inositol hexaphosphate is in the low ligand affinity state, thus offering a structural basis for the acceleration observed in the rate of CO dissociation. Hemoglobin Kansas, in the presence of inositol hexaphosphate, which starts and finishes the reaction in the low affinity state, shows a rate of CO dissociation about nine times faster than stripped hemoglobin A. We conclude from these results that (i) the CO to NO replacement reaction can include a functionally important change in the overall conformation of fully liganded hemoglobin, depending on solution conditions and protein type; (ii) the extra spectral change observed for nitrosyl hemoglobin is not the functionally dominating conformational change, but is a secondary effect within the low ligand affinity protein structure; and (iii) the functional properties of heme ligands are largely controlled by two conformational states of the protein, as seen by nuclear magnetic resonance spectroscopy.

摘要

当在肌醇六磷酸存在的情况下,一氧化氮(NO)在血红蛋白A中取代一氧化碳(CO)时,与脱辅基血红蛋白A不同,其时间进程是异质的,脱辅基血红蛋白A的时间进程是同质的。如果在停流装置中将亚硝基血红蛋白与肌醇六磷酸混合,会观察到一种额外的光谱变化,这就是CO取代反应中光谱动力学异质性的原因。在这种额外光谱变化的等吸收波长处,时间进程显示出CO解离速率加快。另一方面,在肌醇六磷酸存在的情况下,NES-去精氨酸血红蛋白(与N-乙基马来酰亚胺和羧肽酶B反应的血红蛋白)的相同反应是同质且缓慢的,并显示出等吸收性。高分辨率核磁共振光谱表明,在肌醇六磷酸存在下的成人亚硝基血红蛋白处于低配体亲和力状态,从而为观察到的CO解离速率加快提供了结构基础。在肌醇六磷酸存在下,以低亲和力状态开始和结束反应的堪萨斯血红蛋白,其CO解离速率比脱辅基血红蛋白A快约九倍。我们从这些结果得出以下结论:(i)CO被NO取代的反应可能包括完全配体化血红蛋白整体构象的功能重要变化,这取决于溶液条件和蛋白质类型;(ii)观察到的亚硝基血红蛋白的额外光谱变化不是功能上主导的构象变化,而是低配体亲和力蛋白质结构内的次要效应;(iii)如通过核磁共振光谱所见,血红素配体的功能特性在很大程度上受蛋白质的两种构象状态控制。

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