首页> 外文期刊>Frontiers in Molecular Biosciences >Opportunities and Challenges of Backbone, Sidechain, and RDC Experiments to Study Membrane Protein Dynamics in a Detergent-Free Lipid Environment Using Solution State NMR
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Opportunities and Challenges of Backbone, Sidechain, and RDC Experiments to Study Membrane Protein Dynamics in a Detergent-Free Lipid Environment Using Solution State NMR

机译:使用溶液状态NMR研究无洗涤剂脂质环境中膜蛋白动力学的骨干,侧链和RDC实验的机遇与挑战

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Whereas solution state NMR provided a wealth of information on the dynamics landscape of soluble proteins, only few studies have investigated membrane protein dynamics in a detergent-free lipid environment. Recent developments of smaller nanodiscs and other lipid-scaffolding polymers such as styrene maleic acid (SMA), however, open new and promising avenues to explore the function-dynamics relationship of membrane proteins as well as between membrane proteins and their surrounding lipid environment. Favorably sized lipid-bilayer nanodiscs, established membrane protein reconstitution protocols and sophisticated solution NMR relaxation methods probing dynamics over a wide range of timescales will eventually reveal unprecedented lipid-membrane protein interdependencies that allow us to explain things we have not been able to explain so far. In particular, methyl group dynamics resulting from CEST, CPMG, ZZ exchange and RDC experiments are expected to provide new and surprising insights due to their proximity to lipids, their applicability in large 100+ kDa assemblies and their simple labeling due to the availability of commercial precursors. This review summarizes the recent developments of membrane protein dynamics with a special focus on membrane protein dynamics in lipid-bilayer nanodiscs. Opportunities and challenges of backbone, side chain and RDC dynamics applied to membrane proteins are discussed. Solution-state NMR and lipid nanodiscs bear great potential to change our molecular understanding of lipid-membrane protein interactions.
机译:尽管溶液状态NMR在可溶性蛋白质动力学方面提供了大量信息,但只有很少的研究研究了在无洗涤剂脂质环境中的膜蛋白动力学。但是,较小的纳米圆盘和其他脂质支架聚合物(例如苯乙烯马来酸(SMA))的最新发展为探索膜蛋白以及膜蛋白与其周围脂质环境之间的功能动力学关系开辟了新的前景广阔的途径。尺寸合适的脂质双层纳米光盘,成熟的膜蛋白重构方案和复杂的溶液NMR弛豫方法,可以在广泛的时间范围内探索动力学,最终将揭示前所未有的脂质-膜蛋白相互依赖性,这使我们能够解释到目前为止我们无法解释的事情。尤其是,由于CEST,CPMG,ZZ交换和RDC实验产生的甲基动力学,由于它们与脂质的接近性,它们在100+ kDa以上大型装配体中的适用性以及由于市售可得的简单标记,因此有望提供新的令人惊讶的见解。前体。这篇综述总结了膜蛋白动力学的最新发展,特别关注脂质双层纳米光盘中的膜蛋白动力学。讨论了应用于膜蛋白的骨架,侧链和RDC动力学的机遇和挑战。溶液态NMR和脂质纳米盘具有巨大的潜力,可以改变我们对脂质-膜蛋白相互作用的分子理解。

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