首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Proton longitudinal relaxation investigation of histidyl residues of normal human adult and sickle deoxyhemoglobin: evidence for the existence of pregelation aggregates in sickle deoxyhemoglobin solutions.
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Proton longitudinal relaxation investigation of histidyl residues of normal human adult and sickle deoxyhemoglobin: evidence for the existence of pregelation aggregates in sickle deoxyhemoglobin solutions.

机译:正常人和镰刀脱氧血红蛋白的组氨酸残基的质子纵向弛豫研究:镰刀脱氧血红蛋白溶液中存在预胶凝集的证据。

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摘要

Proton nuclear magnetic resonance longitudinal-relaxation-rate measurements have been used to investigate the molecular events that occur during the early stages of the polymerization process of sickle hemoglobin. The longitudinal relaxation rates (T1-1) of the C2 protons of 11 observable surface histidyl residues in normal human adult and sickle hemoglobin in the deoxy state were measured in 0.1 M bis[(2-hydroxyethyl)imino]tris(hydroxymethyl)methane (pH 6.8) in 2H2O. These proton resonances in hemoglobin occur at a position 1.5-5.0 ppm downfield from that of residual water in 2H2O. The T1-1 values for the C2 protons of several surface histidyl residues in sickle hemoglobin in the deoxy state were sensitive to the temperature and the concentration of hemoglobin, factors known to have a profound effect on the polymerization process of sickle hemoglobin. For hemoglobin concentrations of 13.5% or less and temperatures of 25 degrees C or less, the T1-1 values in sickle hemoglobin solutions were the same as the corresponding values in normal hemoglobin, except for the C2 proton of beta 2 histidine, which had a larger T1-1 value. When the temperature or the hemoglobin concentration was increased (i) several additional histidine resonances in sickle hemoglobin solutions had larger T1-1 values than the corresponding ones in normal hemoglobin and (ii) the differences between the T1-1 values (sickle versus normal hemoglobin) of these histidine resonances as well as that of the beta 2 histidine resonance gradually increased. It is proposed that these results reflect the formation of small aggregates in the deoxygenated sickle hemoglobin solutions before gelation. In this model, the histidyl residues for which the T1-1 values are greatly increased in sickle hemoglobin solutions as compared with those in normal hemoglobin are viewed as being located in or near the "contact" areas between sickle hemoglobin molecules within the pregelation aggregates. Thus, this magnetic resonance technique can also be used to identify the intermolecular contacts in the polymerization of sickle hemoglobin.
机译:质子核磁共振纵向弛豫率测量已用于调查镰刀血红蛋白聚合过程的早期阶段发生的分子事件。在0.1 M的双[(2-羟乙基)亚氨基]三(羟甲基)甲烷中测定了正常成人和镰刀血红蛋白在脱氧状态下11个可观察到的表面组氨酸残基C2质子的C2质子的纵向弛豫率(T1-1) pH 6.8)在2H2O中。血红蛋白中的这些质子共振发生在距2H2O中残留水的低场1.5-5.0 ppm的低场。镰状血红蛋白在脱氧状态下多个表面组氨酸残基的C2质子的T1-1值对温度和血红蛋白浓度敏感,已知这些因素对镰状血红蛋白的聚合过程具有深远的影响。当血红蛋白浓度为13.5%或更低且温度为25摄氏度或更低时,镰刀型血红蛋白溶液中的T1-1值与正常血红蛋白中的相应值相同,只是β2组氨酸的C2质子具有较大的T1-1值。当温度或血红蛋白浓度升高时(i)镰状血红蛋白溶液中的其他几个组氨酸共振的T1-1值大于正常血红蛋白中相应的T1-1值,以及(ii)T1-1值之间的差异(镰刀与正常血红蛋白这些组氨酸的共振以及β2组氨酸的共振逐渐增加。建议这些结果反映了凝胶化之前脱氧镰刀血红蛋白溶液中小聚集体的形成。在该模型中,镰状血红蛋白溶液中T1-1值与正常血红蛋白中的组氨酸残基相比大大增加,被认为位于预凝胶聚集体中镰状血红蛋白分子之间“接触”区域内或附近。因此,该磁共振技术也可以用于鉴定镰状血红蛋白聚合中的分子间接触。

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