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Time-resolved multidimensional NMR with non-uniform sampling

机译:具有非均匀采样的时间分辨多维NMR

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摘要

Time-resolved experiments demand high resolution both in spectral dimensions and in time of the studied kinetic process. The latter requirement traditionally prohibits applications of the multidimensional experiments, which, although capable of providing invaluable information about structure and dynamics and almost unlimited spectral resolution, require too lengthy data collection. Our work shows that the problem has a solution in using modern methods of NMR data collection and signal processing. A continuous fast pulsing three-dimensional experiment is acquired using non-uniform sampling during full time of the studied reaction. High sensitivity and time-resolution of a few minutes is achieved by simultaneous processing of the full data set with the multi-dimensional decomposition. The method is verified and illustrated in realistic simulations and by measuring deuterium exchange rates of amide protons in ubiquitin. We applied the method for characterizing kinetics of in vitro phosphorylation of two tyrosine residues in an intrinsically disordered cytosolic domain of the B cell receptor protein CD79b. Signals of many residues including tyrosines in both phosphorylated and unmodified forms of CD79b are found in a heavily crowded region of 2D 1H–15N correlation spectrum and the significantly enhanced spectral resolution provided by the 3D time-resolved approach was essential for the quantitative site-specific analysis.Electronic supplementary materialThe online version of this article (doi:10.1007/s10858-013-9811-1) contains supplementary material, which is available to authorized users.
机译:时间分辨实验要求在光谱尺寸和动力学过程的时间上都具有高分辨率。传统上,后者要求禁止多维实验的应用,尽管多维实验能够提供有关结构和动力学的宝贵信息以及几乎无限的光谱分辨率,但是却需要收集冗长的数据。我们的工作表明,使用现代的NMR数据收集和信号处理方法可以解决该问题。在所研究反应的全过程中,使用非均匀采样获得了连续快速脉冲三维实验。通过同时处理完整数据集和多维分解,可以实现几分钟的高灵敏度和时间分辨率。该方法在现实模拟中以及通过测量泛素中酰胺质子的氘交换速率进行了验证和说明。我们应用该方法来表征B细胞受体蛋白CD79b的内在无序胞质域中两个酪氨酸残基的体外磷酸化动力学。在2D 1 H– 15 N相关光谱的拥挤区域中发现了磷酸化和未修饰形式的CD79b的许多残基(包括酪氨酸)的信号,光谱分辨率显着提高3D时间分辨方法提供的数据对于定量分析特定地点至关重要。电子补充材料本文的在线版本(doi:10.1007 / s10858-013-9811-1)包含补充材料,授权用户可以使用。

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