Dreier Lars, Wider Gerhard
Institut für Molekularbiologie und Biophysik, ETH Zürich, CH-8093 Zürich, Switzerland.
Magn Reson Chem. 2006 Jul;44 Spec No:S206-12. doi: 10.1002/mrc.1838.
Sample concentrations can be measured by nuclear magnetic resonance (NMR) spectroscopy without an internal reference compound using pulse length based concentration determination (PULCON) with 1D NMR spectra. PULCON delivers most accurate results if the spectrum of the sample of interest contains a resolved resonance; but can also be applied to spectral regions with overlapping resonances. If the exact number of lines contributing to the overlapping spectral region is not known, a corresponding error makes the result less precise. The uncertainty about the number of contributing resonances can be reduced with experiments that discriminate different classes of resonances by filtering techniques or by extending PULCON to two-dimensional NMR spectra. We demonstrate the application of PULCON with a 1D 15N-filtered experiment where aromatic resonances of a protein can be observed without interference from 15N-bound protons. Further, we extend PULCON to 2D NMR spectra that permits to determine the exact number of resonances. This extension can readily be applied with sample that contain different solutes.
样品浓度可通过核磁共振(NMR)光谱法测量,无需使用内标化合物,采用基于脉冲长度的浓度测定法(PULCON)结合一维NMR光谱进行测定。如果感兴趣的样品光谱包含一个解析的共振峰,PULCON可提供最准确的结果;但它也可应用于共振峰重叠的光谱区域。如果不知道对重叠光谱区域有贡献的确切谱线数量,相应的误差会使结果的精度降低。通过采用过滤技术区分不同类别的共振峰或通过将PULCON扩展到二维NMR光谱的实验,可以减少对有贡献共振峰数量的不确定性。我们通过一维15N过滤实验展示了PULCON的应用,在该实验中可以观察到蛋白质的芳香族共振峰,而不受15N结合质子的干扰。此外,我们将PULCON扩展到二维NMR光谱,从而能够确定共振峰的确切数量。这种扩展可以很容易地应用于含有不同溶质的样品。