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首页> 外文期刊>Journal of magnetic resonance >Recoupling of residual dipolar couplings in single-domain polymer-stabilized liquid crystals undergoing magic-angle spinning
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Recoupling of residual dipolar couplings in single-domain polymer-stabilized liquid crystals undergoing magic-angle spinning

机译:进行魔角旋转的单域聚合物稳定液晶中残留偶极耦合的再耦合

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摘要

Measurement of dipolar couplings, chemical shift anisotropies, and quadrupole couplings in oriented media such as liquid crystals are of great importance for extraction of structural parameters in biological macromolecules. Here. we introduce a new technique, SAD-REDOR, that consists of recoupling heteronuclear dipolar couplings in molecules dissolved in a single-domain liquid crystal or other oriented medium through the combined use of magic-angle spinning and rotor-synchronized radiofrequency pulses. This application of the REDOR pulse sequence to oriented media offers several advantages such as selectivity over the type of coupling recovered and tunable scaling of the interaction. The effectiveness of the technique is demonstrated both theoretically and experimentally, using the recently developed polyacrylamide-stabilized Pfl phase medium and ~(15)N-labeled benzamide as the aligned molecule.
机译:定向介质(例如液晶)中偶极耦合,化学位移各向异性和四极耦合的测量对于提取生物大分子的结构参数非常重要。这里。我们引入了一种新技术,即SAD-REDOR,该技术包括通过结合使用幻角旋转和转子同步的射频脉冲,将溶解在单域液晶或其他定向介质中的分子中的异核偶极偶合重新耦合。 REDOR脉冲序列在定向介质上的这种应用提供了多个优点,例如相对于恢复的耦合类型具有选择性,并且可交互缩放比例。使用最近开发的聚丙烯酰胺稳定的Pfl相介质和〜(15)N标记的苯甲酰胺作为排列分子,从理论上和实验上都证明了该技术的有效性。

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