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固态核磁共振中同核偶极-偶极相互作用的零量子频率选择性再耦合

Zero-quantum frequency-selective recoupling of homonuclear dipole-dipole interactions in solid state nuclear magnetic resonance.

作者信息

Hu Kan-Nian, Tycko Robert

机构信息

Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892-0520, USA.

出版信息

J Chem Phys. 2009 Jul 28;131(4):045101. doi: 10.1063/1.3176874.

DOI:10.1063/1.3176874
PMID:19655922
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2728366/
Abstract

We describe a method for measuring magnetic dipole-dipole interactions, and hence distances, between pairs of like nuclear spins in a many-spin system under magic-angle spinning (MAS). This method employs a homonuclear dipolar recoupling sequence that creates an average dipole-dipole coupling Hamiltonian under MAS with full zero-quantum symmetry, including both secular and flip-flop terms. Flip-flop terms are then attenuated by inserting rotor-synchronized periods of chemical shift evolution between recoupling blocks, leaving an effective Hamiltonian that contains only secular terms to a good approximation. Couplings between specific pairs of nuclear spins can then be selected with frequency-selective pi pulses. We demonstrate this technique, which we call zero-quantum shift evolution assisted homonuclear recoupling, in a series of one-dimensional and two-dimensional (13)C NMR experiments at 17.6 T and 40.00 kHz MAS frequency on uniformly (13)C-labeled L-threonine powder and on the helix-forming peptide MB(i+4)EK, synthesized with a pair of uniformly (13)C-labeled L-alanine residues. Experimental demonstrations include measurements of distances between (13)C sites that are separated by three bonds, placing quantitative constraints on both sidechain and backbone torsion angles in polypeptides.

摘要

我们描述了一种用于测量魔角旋转(MAS)下多自旋系统中同类核自旋对之间磁偶极 - 偶极相互作用以及距离的方法。该方法采用同核偶极重耦合序列,在MAS下创建具有完全零量子对称性的平均偶极 - 偶极耦合哈密顿量,包括久期项和翻转项。然后通过在重耦合块之间插入转子同步的化学位移演化周期来衰减翻转项,从而得到一个有效哈密顿量,在良好近似下仅包含久期项。然后可以用频率选择性π脉冲选择特定核自旋对之间的耦合。我们在17.6 T和40.00 kHz MAS频率下,对均匀(13)C标记的L - 苏氨酸粉末以及用一对均匀(13)C标记的L - 丙氨酸残基合成的形成螺旋的肽MB(i + 4)EK进行了一系列一维和二维(13)C NMR实验,展示了我们称为零量子位移演化辅助同核重耦合的这项技术。实验演示包括测量相隔三个键的(13)C位点之间的距离,并对多肽的侧链和主链扭转角施加定量限制。