Mishkovsky Mor, Frydman Lucio
Department of Chemical Physics, Weizmann Institute of Science 76100 Rehovot, Israel.
Chemphyschem. 2004 Jun 21;5(6):779-86. doi: 10.1002/cphc.200400005.
Measuring the nuclear magnetic resonance spectra of low-gamma heteronuclei such as 15N constitutes an important analytical tool for the characterization of molecular structure and dynamics. The reduced resonance frequencies and magnetic moments of these heteronuclei, however, make the sensitivity of this kind of spectroscopy inherently lower than that of comparable H NMR observations. A well-known solution to this sensitivity problem is indirect detection: a 2D NMR technique capable of enhancing the sensitivity of heteronuclear NMR by porting the actual data acquisition from the low-gamma nucleus to neighboring protons. This has become the standard method of observation in biomolecular NMR, where the resolution introduced by 2D spectroscopy is always a sought-after commodity. Indirect detection, however, has not gained a wide appeal in organic chemistry or in in vivo investigations, where one-dimensional heteronuclear NMR information usually suffices. The present study explores the possibility of retaining certain advantages derived from indirect detection while not giving up on the simple one-dimensional nature of heteronuclear NMR, by relying on the spatial-encoding scheme we have recently demonstrated for implementing single-scan multi-dimensional NMR spectroscopy. Preliminary results based on a 1D modification of this experiment confirm theoretical calculations suggesting that the sensitivity of 1D 15N NMR can be enhanced significantly in this manner; the relevance of this experiment given the advent of dedicated H-observing cryogenic probeheads with very high sensitivities is briefly discussed.
测量诸如¹⁵N等低γ异核的核磁共振谱构成了表征分子结构和动力学的重要分析工具。然而,这些异核的共振频率和磁矩降低,使得这种光谱学的灵敏度本质上低于可比的¹H NMR观测。解决这种灵敏度问题的一个众所周知的方法是间接检测:一种二维NMR技术,能够通过将实际数据采集从低γ核转移到相邻质子来提高异核NMR的灵敏度。这已成为生物分子NMR中的标准观测方法,其中二维光谱学引入的分辨率一直是人们追求的目标。然而,间接检测在有机化学或体内研究中并未得到广泛应用,在这些研究中,一维异核NMR信息通常就足够了。本研究通过依赖我们最近展示的用于实现单扫描多维NMR光谱的空间编码方案,探索在不放弃异核NMR简单一维性质的同时保留间接检测某些优势的可能性。基于该实验的一维修改的初步结果证实了理论计算,表明以这种方式可以显著提高一维¹⁵N NMR的灵敏度;简要讨论了鉴于具有非常高灵敏度的专用¹H观测低温探头的出现,该实验的相关性。