首页> 外国专利> A METHOD OF USING G-MATRIX FOURIER TRANSFORMATION NUCLEAR MAGNETIC RESONANCE (GFT NMR) SPECTROSCOPY FOR RAPID CHEMICAL SHIFT ASSIGNMENT AND SECONDARY STRUCTURE DETERMINATION OF PROTEINS

A METHOD OF USING G-MATRIX FOURIER TRANSFORMATION NUCLEAR MAGNETIC RESONANCE (GFT NMR) SPECTROSCOPY FOR RAPID CHEMICAL SHIFT ASSIGNMENT AND SECONDARY STRUCTURE DETERMINATION OF PROTEINS

机译:利用G-矩阵傅立叶变换核磁共振(GFT NMR)光谱进行快速化学位移分配和蛋白质二级结构测定的方法

摘要

The present invention presents a new approach to rapidly obtaining precise high-dimensional NMR spectral information, named "GFT NMR spectroscopy", which is based on the phase sensitive joint sampling of the indirect dimensions spanning a subspace of a conventional NMR experiment. The phasesensitive joint sampling of several indirect dimensions of a high-dimensional NMR experiment leads to largely reduced minimum measurement times when compared to FT NMR. This allows one to avoid the "sampling limited" data collection regime. Concomitantly, the analysis of the resulting checmical shift multiplets, which are edited by the G-matrix transformation, yields increased precision for the measurement of the chemical shifts. Additionally, methods of conducting specific GFT NMR experiments as well as methods of conducting a combination of GFT NMR experiments for rapidly obtaining precise chemical shift assignment and determining the structure of proteins or other molecules are disclosed.
机译:本发明提出了一种新的方法来快速获得精确的高维NMR光谱信息,称为“ GFT NMR光谱”,其基于跨越常规NMR实验的子空间的间接尺寸的相敏联合采样。与FT NMR相比,高维度NMR实验的几个间接维度的相敏联合采样可大大减少最小测量时间。这样就可以避免“采样受限”的数据收集机制。随之而来的是,对所得的化学位移多重峰的分析(通过G矩阵转换进行编辑)提高了化学位移测量的精度。另外,公开了进行特定GFT NMR实验的方法以及进行GFT NMR实验的组合以快速获得精确的化学位移分配并确定蛋白质或其他分子的结构的方法。

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