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Low-power homonuclear dipolar recoupling using supercycled symmetry-based and exponentially-modulated pulse sequences

机译:使用基于超周期对称性和指数调制脉冲序列的低功率同核偶极耦合

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摘要

Aimed at performing dipolar recoupling as part of biological solid-state NMR experiments without using excessively strong rf irradiation, we present a series of low-power supercycled symmetry-based and exponentially modulated pulse sequences facilitating efficient recoupling over specified chemical shift ranges even at high-speed spinning conditions. The experiments are designed through simple phase modulation of known 'lower-quality' symmetry-based pulse sequences or highly rf-demanding exponentially modulated recoupling experiments. The methods are described analytically and numerically and demonstrated experimentally by one- and two-dimensional correlation spectra of 2,3- ~(13)C_2-L-alanine and the fibrillating-core decapeptide SNNFGAILSS of human Islet Amyloid Poly-Peptide (hIAPP, or amylin) uniformly ~(13)C,~(15)N-labeled at the FGAIL residues.
机译:为了在生物固态NMR实验中不使用过强的rf辐射的情况下进行偶极偶合,我们提出了一系列基于对称性和指数调制的低功率超循环超脉冲技术,即使在较高的化学位移范围内也能有效地进行偶合。加快纺纱条件。通过已知的“基于对称性的较低质量”脉冲序列的简单相位调制或对rf要求很高的指数调制重新耦合实验来设计实验。通过2,3-〜(13)C_2-L-丙氨酸与人胰岛淀粉样多肽(hIAPP,的原纤化核心十肽SNNFGAILSS)的一维和二维相关光谱对方法进行了分析和数值描述并通过实验进行了证明。或糊精)在FGAIL残基处均匀〜(13)C,〜(15)N标记。

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