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通过1H间接检测实现固体的灵敏度增强型静态15N核磁共振。

Sensitivity-enhanced static 15N NMR of solids by 1h indirect detection.

作者信息

Hong M, Yamaguchi S

机构信息

Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.

出版信息

J Magn Reson. 2001 May;150(1):43-8. doi: 10.1006/jmre.2001.2309.

Abstract

A method for enhancing the sensitivity of 15N spectra of nonspinning solids through 1H indirect detection is introduced. By sampling the 1H signals in the windows of a pulsed spin-lock sequence, high-sensitivity 1H spectra can be obtained in two-dimensional (2D) spectra whose indirect dimension yields the 15N chemical shift pattern. By sacrificing the 1H chemical shift information, sensitivity gains of 1.8 to 2.5 for the 15N spectra were achieved experimentally. A similar sensitivity enhancement was also obtained for 2D (15)N-(1)H dipolar and 15N chemical shift correlation spectroscopy, by means of a 3D 1H/15N-1H/15N correlation experiment. We demonstrate this technique, termed PRINS for proton indirectly detected nitrogen static NMR, on a crystalline model compound with long 1H T(1rho) and on a 25-kDa protein with short 1H T(1rho). This 1H indirect detection approach should be useful for enhancing the sensitivity of 15N NMR of oriented membrane peptides. It can also be used to facilitate the empirical optimization of 15N-detected experiments where the inherent sensitivity of the sample is low.

摘要

介绍了一种通过¹H间接检测提高非旋转固体¹⁵N谱灵敏度的方法。通过在脉冲自旋锁定序列的窗口中对¹H信号进行采样,可以在二维(2D)谱中获得高灵敏度的¹H谱,其间接维度给出¹⁵N化学位移模式。通过牺牲¹H化学位移信息,实验上实现了¹⁵N谱灵敏度提高1.8至2.5倍。通过三维¹H/¹⁵N-¹H/¹⁵N相关实验,在二维(¹⁵)N-(¹)H偶极和¹⁵N化学位移相关光谱中也获得了类似的灵敏度增强。我们在具有长¹H T₁ρ的晶体模型化合物和具有短¹H T₁ρ的25 kDa蛋白质上展示了这种称为PRINS(质子间接检测氮静态核磁共振)的技术。这种¹H间接检测方法对于提高定向膜肽的¹⁵N核磁共振灵敏度应该是有用的。它还可用于促进在样品固有灵敏度较低的¹⁵N检测实验的经验优化。

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