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~1H assisted ~(13)C/~(15)N heteronuclear correlation spectroscopy in oriented sample solid-state NMR of single crystal and magnetically aligned samples

机译:单晶和磁取向样品的定向样品固态NMR中〜1H辅助〜(13)C /〜(15)N异核相关光谱

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摘要

~1H-irradiation under mismatched Hartmann-Hahn conditions provides an alternative mechanism for carrying out ~(15)N/~(13)C transfers in triple-resonance heteronuclear correlation spectroscopy (HETCOR) on stationary samples of single crystals and aligned samples of biopolymers, which improve the efficiency especially when the direct ~(15)N- ~(13)C dipolar couplings are small. In many cases, the sensitivity is improved by taking advantage of the ~(13)Cα labeled sites in peptides and proteins with ~(13)C detection. The similarities between experimental and simulated spectra demonstrate the validity of the recoupling mechanism and identify the potential for applying these experiments to virus particles or membrane proteins in phospholipid bilayers; however, further development is needed in order to derive quantitative distance and angular constraints from these measurements.
机译:在不匹配的Hartmann-Hahn条件下进行〜1H辐照为在单晶固定样品和生物聚合物对齐样品上的三共振异核相关光谱(HETCOR)中进行〜(15)N /〜(13)C转移提供了另一种机制,特别是在〜(15)N-〜(13)C直接偶极耦合较小时,可以提高效率。在许多情况下,利用〜(13)C检测可利用肽和蛋白质中〜(13)Cα标记的位点来提高灵敏度。实验光谱和模拟光谱之间的相似性证明了重新耦合机制的有效性,并确定了将这些实验应用于磷脂双层中的病毒颗粒或膜蛋白的潜力。然而,为了从这些测量中得出定量的距离和角度约束,还需要进一步的发展。

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