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肌醇六磷酸与人高铁血红蛋白的结合

Binding of inositol hexaphosphate to human methemoglobin.

作者信息

Olson J S

出版信息

J Biol Chem. 1976 Jan 25;251(2):447-58.

PMID:1393
Abstract

The observed static difference spectrum produced by inositol hexaphosphate binding to methemoglobin is the sum of a very fast and a slow spectral transition. The more rapid absorbance change is too fast to be measured by stopped flow techniques, whereas the slow change exhibits a half-time in the range 1 to 6 s. From the pH dependence of the rapidly formed difference spectrum and from a series of heme ligand binding studies, the rapid phase is interpreted to reflect a localized tertiary conformational change which immediately accompanies inositol hexaphosphate binding and results in a selective increase in spin and reactivity of the beta chain heme groups. In contrast, the slow phase appears to reflect a first order isomerization process which involves only a small portion (less than 10%) of the hemoglobin molecules and results primarily in a marked alteration of the spectral properties of the alpha chains with little change in spin. While the rapid spectral transition cannot be directly related to the overall quaternary transition which occurs during oxygen binding to ferrous deoxyhemoglobin, the slow spectral transition may represent the abortive formation of a deoxyhemoglobin A-like conformation which is inhibited in both rate and extent by the presence of water molecules bound to the heme iron atoms.

摘要

观察到的肌醇六磷酸与高铁血红蛋白结合产生的静态差光谱是一个非常快速和一个缓慢光谱转变的总和。较快的吸光度变化太快,无法用停流技术测量,而缓慢变化的半衰期在1至6秒范围内。根据快速形成的差光谱的pH依赖性以及一系列血红素配体结合研究,快速相被解释为反映了局部三级构象变化,该变化立即伴随肌醇六磷酸结合,并导致β链血红素基团的自旋和反应性选择性增加。相比之下,缓慢相似乎反映了一级异构化过程,该过程仅涉及一小部分(小于10%)的血红蛋白分子,主要导致α链光谱特性的显著改变,而自旋变化很小。虽然快速光谱转变不能直接与氧与亚铁脱氧血红蛋白结合期间发生的整体四级转变相关,但缓慢光谱转变可能代表了一种类似脱氧血红蛋白A构象的流产形成,这种构象在速率和程度上都受到与血红素铁原子结合的水分子的抑制。

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