Structural dynamics of the heme pocket and intersubunit coupling in the dimeric hemoglobin from Scapharca inaequivalvis.

Xiang Gao, M. Mizuno, H. Ishikawa, Srinivasan Muniyappan, H. Ihee, Y. Mizutani
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Abstract

Cooperativity is essential for the proper functioning of numerous proteins by allosteric interactions. Hemoglobin from Scapharca inaequivalvis (HbI) is a homodimeric protein that can serve as a minimal unit for studying cooperativity. We investigated the structural changes in HbI after carbon monoxide dissociation using time-resolved resonance Raman spectroscopy and observed structural rearrangements in the Fe-proximal histidine bond, the position of the heme in the pocket, and the hydrogen bonds between heme and interfacial water upon ligand dissociation. Some of the spectral changes were different from those observed for human adult hemoglobin due to differences in subunit assembly and quaternary changes. The structural rearrangements were similar for the singly and doubly dissociated species but occurred at different rates. The rates of the observed rearrangements indicated that they occurred synchronously with subunit rotation and are influenced by intersubunit coupling, which underlies the positive cooperativity of HbI.
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Scapharca inaequivalvis 的二聚体血红蛋白中血红素袋和亚基间耦合的结构动力学。
通过异构相互作用,许多蛋白质的正常功能都离不开协同作用。Scapharca inaequivalvis 的血红蛋白(HbI)是一种同源二聚体蛋白质,可作为研究合作性的最小单位。我们利用时间分辨共振拉曼光谱研究了一氧化碳解离后 HbI 的结构变化,观察到配体解离后 Fe-近端组氨酸键、血红素在口袋中的位置以及血红素与界面水之间氢键的结构重排。由于亚基组装和四价变化的不同,一些光谱变化与人类成人血红蛋白的光谱变化不同。单解离和双解离物种的结构重排相似,但发生的速率不同。观察到的重排速率表明,它们与亚基旋转同步发生,并受到亚基间耦合的影响,这也是 HbI 正合作性的基础。
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