首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dynamics of Xenon inside Hydrophobic Cavities As Probed by NMR Relaxation of Dissolved Laser-Polarized Xenon
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Dynamics of Xenon inside Hydrophobic Cavities As Probed by NMR Relaxation of Dissolved Laser-Polarized Xenon

机译:核磁共振弛豫的溶解激光极化氙在疏水腔内氙的动力学

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Longitudinal relaxation times T_1 of laser-polarized xenon in water solutions containing α-cylodextrin and wheat nonspecific lipid transfer protein have been measured. By monitoring the xenon signal decay curves at different solute concentrations and different xenon pressures, we have been able to estimate the binding constant of xenon in the molecular hydrophobic cavities and to extract the xenon longitudinal self-relaxation time of the pure complex form T_(1complex). By studying the variation of T_(1complex) with the static magnetic field, we have estimated the correlation times of the xenon-proton dipolar interactions as well as the contribution of chemical shift anisotropy to the xenon relaxation. It appears that in the two studied cases the correlation time of xenon-proton dipolar interactions is between the overall correlation time of the host molecule and the translational correlation time of xenon diffusing freely around solute protons. In particular in the case of the protein, it is typically one-tenth of the overall rotational correlation time, which explains the success of magnetization transfer from dissolved laser-polarized xenon to protein protons. It also appears that the contribution from chemical shift anisotropy to relaxation is very limited. The influence of these results on the SPINOE experiments and on the energetic mechanisms inducing xenon binding is discussed.
机译:测量了含α-环糊精和小麦非特异性脂质转移蛋白的水溶液中激光偏振氙气的纵向弛豫时间T_1。通过监测在不同溶质浓度和不同氙压力下的氙信号衰减曲线,我们已经能够估计氙在分子疏水腔中的结合常数,并提取纯复合物T_(1complex)的氙纵向自弛豫时间)。通过研究T_(1复合物)在静磁场下的变化,我们估计了氙-质子偶极相互作用的相关时间以及化学位移各向异性对氙弛豫的贡献。似乎在两种研究的情况下,氙-质子偶极相互作用的相关时间在主体分子的整体相关时间与氙在质子周围自由扩散的平移相关时间之间。特别是在蛋白质的情况下,它通常是整个旋转相关​​时间的十分之一,这说明了从溶解的激光偏振氙到蛋白质质子的磁化转移成功。从化学位移各向异性到弛豫的贡献似乎也非常有限。讨论了这些结果对SPINOE实验和诱导氙气结合的能量机制的影响。

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