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Broadband Homonuclear Correlation Spectroscopy Driven by Combined R2nv Sequences under Fast Magic Angle Spinning for NMR Structural Analysis of Organic and Biological Solids

机译:R2nv序列驱动的宽带同核相关光谱在快速魔角旋转下进行有机和生物固体的NMR结构分析

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摘要

We recently described a family of experiments for R2nv Driven Spin Diffusion (RDSD) spectroscopy suitable for homonuclear correlation experiments under fast MAS conditions (J. Am. Chem. Soc., 133, >2011, 3943). In these RDSD experiments, since the broadened second-order rotational resonance conditions are dominated by the radio frequency field strength and the phase shifts, as well as the size of reintroduced dipolar couplings, the different R2nv sequences display unique polarization transfer behaviors and different recoupling frequency bandwidths. Herein, we present a series of modified R2nv sequences, dubbed COmbined R2nv-Driven (CORD), that yield broadband homonuclear dipolar recoupling and give rise to uniform distribution of cross peak intensities across the entire correlation spectrum. We report NMR experiments and numerical simulations demonstrating that these CORD spin diffusion sequences are suitable for broadband recoupling at a wide range of magnetic fields and MAS frequencies, including fast-MAS conditions (νr = 40 kHz and above). Since these CORD sequences are largely insensitive to dipolar truncation, they are well suited for the determination of long-range distance constraints, which are indispensable for the structural characterization of a broad range of systems. Using U-13C-alanine and U-13C,15N-histidine, we show that under fast-MAS conditions, the CORD sequences display polarization transfer efficiencies within broadband frequency regions that are generally higher than those offered by other existing spin diffusion pulse schemes. A 89-residue U-13C,15N-dynein light chain (LC8) protein has also been used to demonstrate that the CORD sequences exhibit uniformly high cross peak intensities across the entire chemical shift range.
机译:我们最近描述了一系列R2n v 驱动自旋扩散(RDSD)光谱实验,适用于快速MAS条件下的同核相关实验(J. Am。Chem。Soc。,133,> 2011 < / strong>,3943)。在这些RDSD实验中,由于拓宽的二阶旋转共振条件受射频场强和相移以及重新引入的偶极耦合的大小支配,因此显示了不同的R2n v 序列独特的极化传输行为和不同的耦合频率带宽。在这里,我们提出了一系列经修饰的R2n v 序列,称为COmbined R2n v -Driven(CORD),可产生宽带同核双极耦合,并产生均匀的交叉分布。整个相关光谱中的峰强度。我们报告了NMR实验和数值模拟,表明这些CORD自旋扩散序列适用于宽范围的磁场和MAS频率的宽带耦合,包括快速MAS条件(νr= 40 kHz及以上)。由于这些CORD序列对偶极截短不敏感,因此它们非常适合确定远程距离约束,这对于各种系统的结构表征都是必不可少的。使用U- 13 C-丙氨酸和U- 13 C, 15 N-组氨酸,我们证明在快速MAS条件下,CORD序列显示宽带频率区域内的极化转移效率通常高于其他现有自旋扩散脉冲方案提供的极化转移效率。还使用了89个残基的U- 13 C, 15 N-动力蛋白轻链(LC8)蛋白来证明CORD序列在整个化学位移范围。

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