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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Dynamic Nuclear Polarization/Solid-State NMR Spectroscopy of Membrane Polypeptides: Free-Radical Optimization for Matrix-Free Lipid Bilayer Samples
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Dynamic Nuclear Polarization/Solid-State NMR Spectroscopy of Membrane Polypeptides: Free-Radical Optimization for Matrix-Free Lipid Bilayer Samples

机译:膜多肽的动态核偏振/固态NMR光谱:无基质脂质双层样品的自由基优化

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摘要

Dynamic nuclear polarization (DNP) boosts the sensitivity of NMR spectroscopy by orders of magnitude and makes investigations previously out of scope possible. For magic-angle-spinning (MAS) solid-state NMR spectroscopy studies, the samples are typically mixed with biradicals dissolved in a glass-forming solvent and are investigated at cryotemperatures. Herein, we present new biradical polarizing agents developed for matrixfree samples such as supported lipid bilayers, which are systems widely used for the investigation of membrane polypeptides of high biomedical importance. A series of 11 biradicals with different structures, geometries, and physicochemical properties were comprehensively tested for DNP performance in lipid bilayers, some of them developed specifically for DNP investigations of membranes. The membrane-anchored biradi-cals PyPol-C16, AMUPOL-cholesterol, and bTurea-C16 were found to exhibit improved g-tensor alignment, inter-radical distance, and dispersion. Consequently, these biradicals show the highest signal enhancement factors so far obtained for matrixfree membranes or other matrix-free samples and may potentially shorten NMR acquisition times by three orders of magnitude. Furthermore, the optimal biradical-to-lipid ratio, sample deuteration, and membrane lipid composition were determined under static and MAS conditions. To rationalize biradical performance better, DNP enhancement was measured by using the C-13 and N-15 signals of lipids and a peptide as a function of the biradical concentration, DNP build-up time, resonance line width, quenching effect, microwave power, and MAS frequency.
机译:动态核偏振(DNP)通过数量级促进NMR光谱的灵敏度,并使预先脱离范围的研究。对于魔法角旋转(MAS)固态NMR光谱研究,样品通常与溶解在玻璃形成溶剂中的血管型混合,并在低温培养物上进行研究。在此,我们提出了用于基质红外样品的新型抗体偏振剂,例如负载的脂质双层,其是广泛用于研究高生物医学重要性的膜多肽的系统。在脂双层的DNP性能中全面地测试了一种具有不同结构,几何和物理化学性质的11个桦树型,其中一些是用于膜的DNP调查。发现膜固定的BiraDi-Cals Pypol-C16,Amupol-胆固醇和BTUREA-C16表现出改善的G-张统排列,间自由基距离和分散体。因此,这些抗体显示到目前为止最高的信号增强因子,以获得基质非纤维膜或其他基质样品,并且可能缩短NMR获取时间三个数量级。此外,在静态和MAS条件下测定最佳的血管基至脂质比,样品氘和膜脂质组合物。为了使血管分性能更好,通过使用脂质的C-13和N-15信号测量DNP增强作为血液浓度的函数,DNP积聚时间,谐振线宽,淬火效果,微波功率,和MAS频率。

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