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超极化水增强二维质子 NMR 相关:一种新的分子相互作用方法。

Hyperpolarized Water Enhances Two-Dimensional Proton NMR Correlations: A New Approach for Molecular Interactions.

机构信息

Research Institute of the University of Bucharest (ICUB) , 36-46 B-dul M. Kogalniceanu , RO-050107 Bucharest , Romania.

ELI-NP, Extreme Light Infrastructure - Nuclear Physics , IFIN-HH , 30 Reactorului Street , RO-077125 Bucharest-Magurele , Romania.

出版信息

J Am Chem Soc. 2019 Aug 14;141(32):12448-12452. doi: 10.1021/jacs.9b03651. Epub 2019 Aug 6.

Abstract

Protein and peptide interactions are characterized in the liquid state by multidimensional NMR spectroscopy experiments, which can take hours to record. We show that starting from hyperpolarized HDO, two-dimensional (2D) proton correlation maps of a peptide, either free in solution or interacting with liposomes, can be acquired in less than 60 s. In standard 2D NMR spectroscopy without hyperpolarization, the acquisition time required for similar spectral correlations is on the order of hours. This hyperpolarized experiment enables the identification of amino acids featuring solvent-interacting hydrogens and provides fast spectroscopic analysis of peptide conformers. Sensitivity-enhanced 2D proton correlation spectroscopy is a useful and straightforward tool for biochemistry and structural biology, as it does not recur to nitrogen-15 or carbon-13 isotope enrichment.

摘要

蛋白质和肽相互作用在液态下通过多维 NMR 光谱实验来表征,该实验可能需要数小时才能记录。我们表明,从超极化的 HDO 开始,无论是在溶液中自由存在还是与脂质体相互作用的肽的二维(2D)质子相关图谱,可以在不到 60 秒的时间内获得。在没有超极化的标准 2D NMR 光谱学中,获得类似光谱相关所需的采集时间为数小时。该超极化实验能够识别具有溶剂相互作用氢的氨基酸,并提供肽构象的快速光谱分析。增强灵敏度的二维质子相关光谱学是生物化学和结构生物学的一种有用且直接的工具,因为它不依赖于氮-15 或碳-13 同位素富集。

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