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Detection of side-chain proton resonances of fully protonated biosolids in nano-litre volumes by magic angle spinning solid-state NMR

机译:用魔法角旋转固态NMR检测纳米升中全质子化生物溶胶侧链质子共振的侧链质子共振

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摘要

We present a new solid-state NMR proton-detected three-dimensional experiment dedicated to the observation of protein proton side chain resonances in nano-liter volumes. The experiment takes advantage of very fast magic angle spinning and double quantum 13C-13C transfer to establish efficient (H)CCH correlations detected on side chain protons. Our approach is demonstrated on the HET-s prion domain in its functional amyloid fibrillar form, fully protonated, with a sample amount of less than 500 A mu g using a MAS frequency of 70 kHz. The majority of aliphatic and aromatic side chain protons (70%) are observable, in addition to H alpha resonances, in a single experiment providing a complementary approach to the established proton-detected amide-based multidimensional solid-state NMR experiments for the study and resonance assignment of biosolid samples, in particular for aromatic side chain resonances.
机译:我们提出了一种新的固态NMR质子检测到的三维实验,其专用于纳米升体积中的蛋白质质子侧链共振观察。 实验利用非常快的魔法角度纺丝和双量子13C-13C转移,以建立在侧链质子上检测到的高效(H)CCH相关性。 我们的方法在其官能淀粉样纤维状纤维状纤维形式的HET-S朊病毒结构域上证明,全质子化,样品量小于500Aμm,使用70kHz的MAS频率。 除了Hα共振之外,在单一实验中,除了Hα共振之外,大多数脂族和芳族侧链质子(70%)是可观察到的,该实验在提供互补的酰胺检测到的基于酰胺的多维固态NMR实验和研究的互补方法 生物溶胶样品的共振分配,特别是对于芳族侧链共振。

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