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Ligand binding and protein relaxation in heme proteins: a room temperature analysis of nitric oxide geminate recombination

机译:血红素蛋白中的配体结合和蛋白质松弛:一氧化氮聚重组的室温分析

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摘要

Ultrafast absorption spectroscopy is used to study heme-NO recombination at room temperature in aqueous buffer on time scales where the ligand cannot leave its cage environment. While a single barrier is observed for the cage recombination of NO with heme in the absence of globin, recombination in hemoglobin and myoglobin is nonexponential. Examination of hemoglobin with and without inositol hexaphosphate points to proximal constraints as important determinants of the geminate rebinding kinetics. Molecular dynamics simulations of myoglobin and heme-imidazole subsequent to ligand dissociation were used to investigate the transient behavior of the Fe-proximal histidine coordinate and its possible involvement in geminate recombination. The calculations, in the context of the absorption measurements, are used to formulate a distinction between nonexponential rebinding that results from multiple protein conformations (substates) present at equilibrium or from nonequilibrium relaxation of the protein triggered by a perturbation such as ligand dissociation. The importance of these two processes is expected to depend on the time scale of rebinding relative to equilibrium fluctuations and nonequilibrium relaxation. Since NO rebinding occurs on the picosecond time scale of the calculated myoglobin relaxation, a time-dependent barrier is likely to be an important factor in the observed nonexponential kinetics. The general implications of the present results for ligand binding in heme proteins and its time and temperature dependence are discussed. It appears likely that, at low temperatures, inhomogeneous protein populations play an important role and that as the temperature is raised, relaxation effects become significant as well.
机译:超快吸收光谱被用于研究血红素-NO重组在室温下在水性缓冲液中对时间尺度,其中的配体不能离开其笼环境。而在血红蛋白和肌红蛋白缺乏珠蛋白,重组的,观察到对NO的笼重组与血红素单个屏障是非指数。有和没有肌醇六分近端约束的孪生重新绑定动力学的重要决定因素血红蛋白的检验。肌红蛋白的分子动力学模拟和血红素 - 咪唑随后与配体解离被用来研究中的Fe-近端组氨酸的坐标瞬态行为和在成对复合其可能参与。计算,在吸收测量的上下文中,用于配制非指数重新绑定之间进行区分是来自多个蛋白质构象(子状态)本发明的结果在平衡时或从由扰动如配体解离触发的蛋白质的非平衡松弛。这两个过程的重要性有望依靠重新绑定相对平衡波动和不平衡放松的时间尺度。由于NO重新绑定所计算出的肌红蛋白松弛皮秒的时间尺度发生时,依赖于时间的屏障可能是在所观察到的非指数动力学的重要因素。配体在血红素蛋白和它的时间和温度依赖性结合本发明的结果的总体影响进行了讨论。看来可能是,在低温下,不均匀的蛋白质群中发挥重要作用,并随着温度的升高,放松的效果变得以及显著。

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