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脂质纳米盘用于膜蛋白的高分辨率 NMR 研究。

Lipid Nanodiscs for High-Resolution NMR Studies of Membrane Proteins.

机构信息

Bavarian NMR Center (BNMRZ) at the Department of Chemistry, Technical University of Munich, Ernst-Otto-Fischer-Strasse 2, 85748 Garching, Germany.

Institute of Structural Biology, Helmholtz Zentrum München, Ingolstädter Landstraße 1, 85764 Neuherberg, Germany.

出版信息

Chem Rev. 2022 May 25;122(10):9395-9421. doi: 10.1021/acs.chemrev.1c00702. Epub 2021 Oct 19.

Abstract

Membrane proteins (MPs) play essential roles in numerous cellular processes. Because around 70% of the currently marketed drugs target MPs, a detailed understanding of their structure, binding properties, and functional dynamics in a physiologically relevant environment is crucial for a more detailed understanding of this important protein class. We here summarize the benefits of using lipid nanodiscs for NMR structural investigations and provide a detailed overview of the currently used lipid nanodisc systems as well as their applications in solution-state NMR. Despite the increasing use of other structural methods for the structure determination of MPs in lipid nanodiscs, solution NMR turns out to be a versatile tool to probe a wide range of MP features, ranging from the structure determination of small to medium-sized MPs to probing ligand and partner protein binding as well as functionally relevant dynamical signatures in a lipid nanodisc setting. We will expand on these topics by discussing recent NMR studies with lipid nanodiscs and work out a key workflow for optimizing the nanodisc incorporation of an MP for subsequent NMR investigations. With this, we hope to provide a comprehensive background to enable an informed assessment of the applicability of lipid nanodiscs for NMR studies of a particular MP of interest.

摘要

膜蛋白(MPs)在许多细胞过程中发挥着重要作用。由于目前市场上约 70%的药物针对 MPs,因此详细了解它们在生理相关环境中的结构、结合特性和功能动力学对于更详细地了解这一重要蛋白质类别至关重要。我们在这里总结了使用脂质纳米盘进行 NMR 结构研究的好处,并详细介绍了目前使用的脂质纳米盘系统及其在溶液 NMR 中的应用。尽管越来越多的其他结构方法被用于确定脂质纳米盘中 MPs 的结构,但溶液 NMR 结果证明是一种多功能工具,可以探测广泛的 MP 特征,范围从确定小分子到中分子 MPs 的结构到探测配体和伴侣蛋白结合以及在脂质纳米盘环境中探测功能相关的动态特征。我们将通过讨论最近使用脂质纳米盘的 NMR 研究来扩展这些主题,并制定出一个优化 MP 纳米盘纳入的关键工作流程,以便随后进行 NMR 研究。通过这一点,我们希望提供一个全面的背景,以便对脂质纳米盘在特定感兴趣的 MP 的 NMR 研究中的适用性进行知情评估。

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