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Dynamics of hemoglobin in human erythrocytes and in solution: Influence of viscosity studied by ultrafast vibrational echo experiments

机译:人类红细胞和溶液中血红蛋白的动力学:通过超快振动回波实验研究粘度的影响

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摘要

Ultrafast spectrally resolved stimulated vibrational echo experiments are used to measure the vibrational dephasing of the CO stretching mode of hemoglobin-CO (HbCO) inside living human erythrocytes (red blood cells), in liquid solutions, and in a glassy matrix. A method is presented to overcome the adverse impact on the vibrational echo signal from the strong light scattering caused by the cells. The results from the cytoplasmic HbCO are compared to experiments on aqueous HbCO samples prepared in different buffers, solutions containing low and high concentrations of glycerol, and in a solid trehalose matrix. Measurements are also presented that provide an accurate determination of the viscosity at the very high Hb concentration that is found inside the cells. It is demonstrated that the dynamics of the protein, as sensed by the CO ligand, are the same inside the erythrocytes and in aqueous solution and are independent of the viscosity. In solutions that are predominantly glycerol, the dynamics are modified somewhat but are still independent of viscosity. The experiments in trehalose give the dynamics at infinite viscosity and are used to separate the viscosity-dependent dynamics from the viscosity-independent dynamics. Although the HbCO dynamics are the same in the red blood cell and in the equivalent aqueous solutions, differences in the absorption spectra show that the distribution of a protein's equilibrium substates is sensitive to small pH differences.
机译:超快光谱分辨激发振动回波实验用于测量活人红细胞(红细胞),液体溶液和玻璃状基质中血红蛋白-CO(HbCO)的CO拉伸模式的振动相移。提出了一种方法来克服细胞引起的强光散射对振动回波信号的不利影响。将细胞质HbCO的结果与在不同缓冲液,含有低浓度和高浓度甘油的溶液以及固体海藻糖基质中制备的含水HbCO样品的实验进行了比较。还提供了测量结果,这些测量结果可准确确定在细胞内部发现的非常高的Hb浓度下的粘度。已证明,由CO配体检测到的蛋白质动力学在红细胞内部和水溶液中是相同的,并且与粘度无关。在主要为甘油的溶液中,动力学有所改变,但仍与粘度无关。海藻糖实验提供了无限黏度下的动力学,并用于将黏度相关动力学与黏度独立动力学分开。尽管红细胞和等效水溶液中的HbCO动力学相同,但吸收光谱的差异表明蛋白质平衡亚状态的分布对较小的pH差异敏感。

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