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生物分子组装体的 DNP NMR。

DNP NMR of biomolecular assemblies.

机构信息

Centre de RMN à Très Hauts Champs, Institut des Sciences Analytiques (UMR 5280 - CNRS, ENS Lyon, UCB Lyon 1), Université de Lyon, 5 rue de la Doua, 69100 Villeurbanne, France.

Department of Chemistry and Biochemistry, University of Delaware, 163 The Green, DE 19716, USA.

出版信息

J Struct Biol. 2019 Apr 1;206(1):90-98. doi: 10.1016/j.jsb.2018.09.011. Epub 2018 Sep 29.

Abstract

Dynamic Nuclear Polarization (DNP) is an effective approach to alleviate the inherently low sensitivity of solid-state NMR (ssNMR) under magic angle spinning (MAS) towards large-sized multi-domain complexes and assemblies. DNP relies on a polarization transfer at cryogenic temperatures from unpaired electrons to adjacent nuclei upon continuous microwave irradiation. This is usually made possible via the addition in the sample of a polarizing agent. The first pioneering experiments on biomolecular assemblies were reported in the early 2000s on bacteriophages and membrane proteins. Since then, DNP has experienced tremendous advances, with the development of extremely efficient polarizing agents or with the introduction of new microwaves sources, suitable for NMR experiments at very high magnetic fields (currently up to 900 MHz). After a brief introduction, several experimental aspects of DNP enhanced NMR spectroscopy applied to biomolecular assemblies are discussed. Recent demonstration experiments of the method on viral capsids, the type III and IV bacterial secretion systems, ribosome and membrane proteins are then described.

摘要

动态核极化(DNP)是一种有效的方法,可以缓解在魔角旋转(MAS)下,对于大型多域复合物和组装体的固态核磁共振(ssNMR)固有的低灵敏度。DNP 依赖于在低温下从不成对电子到相邻核的连续微波辐照下的极化转移。这通常可以通过在样品中添加极化剂来实现。在 21 世纪初,人们首次在噬菌体和膜蛋白上报道了关于生物分子组装体的开创性实验。此后,DNP 取得了巨大的进展,开发了极其高效的极化剂,或引入了新的微波源,适用于非常高磁场下的 NMR 实验(目前高达 900 MHz)。在简要介绍之后,讨论了应用于生物分子组装体的 DNP 增强 NMR 光谱学的几个实验方面。然后描述了该方法在病毒衣壳、III 型和 IV 型细菌分泌系统、核糖体和膜蛋白上的最新演示实验。

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