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Quantitative Exchange NMR-Based Analysis of Huntingtin-SH3 Interactions Suggests an Allosteric Mechanism of Inhibition of Huntingtin Aggregation.基于定量交换 NMR 的亨廷顿蛋白-SH3 相互作用分析表明亨廷顿蛋白聚集抑制的变构机制。
J Am Chem Soc. 2021 Jun 30;143(25):9672-9681. doi: 10.1021/jacs.1c04786. Epub 2021 Jun 17.
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Oligomeric assembly regulating mitochondrial HtrA2 function as examined by methyl-TROSY NMR.寡聚体组装调节线粒体 HtrA2 功能的研究进展:基于甲基-TROSY NMR 的分析
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Probing the Interaction of Huntingtin Exon-1 Polypeptides with the Chaperonin Nanomachine GroEL.研究亨廷顿外显子 1 多肽与伴侣蛋白纳米机器 GroEL 的相互作用。
Chembiochem. 2021 Jun 2;22(11):1985-1991. doi: 10.1002/cbic.202100055. Epub 2021 Apr 7.
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An S/T motif controls reversible oligomerization of the Hsp40 chaperone DNAJB6b through subtle reorganization of a β sheet backbone.一个 S/T 基序通过微妙的β 片层骨架重排控制 Hsp40 伴侣蛋白 DNAJB6b 的可逆寡聚化。
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Kinetics of Fast Tetramerization of the Huntingtin Exon 1 Protein Probed by Concentration-Dependent On-Resonance Measurements.浓度依赖的共振测量探究亨廷顿外显子 1 蛋白快速四聚化的动力学。
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NMR 方法在配体结合和蛋白质-蛋白质相互作用中探索“暗”状态。

NMR methods for exploring 'dark' states in ligand binding and protein-protein interactions.

机构信息

Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892-0520, United States.

Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892-0520, United States.

出版信息

Prog Nucl Magn Reson Spectrosc. 2022 Feb;128:1-24. doi: 10.1016/j.pnmrs.2021.10.001. Epub 2021 Nov 2.

DOI:10.1016/j.pnmrs.2021.10.001
PMID:35282867
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8921508/
Abstract

A survey, primarily based on work in the authors' laboratory during the last 10 years, is provided of recent developments in NMR studies of exchange processes involving protein-ligand and protein-protein interactions. We start with a brief overview of the theoretical background of Dark state Exchange Saturation Transfer (DEST) and lifetime line-broadening (ΔR) NMR methodology. Some limitations of the DEST/ΔR methodology in applications to molecular systems with intermediate molecular weights are discussed, along with the means of overcoming these limitations with the help of closely related exchange NMR techniques, such as the measurements of Carr-Purcell-Meiboom-Gill (CPMG) relaxation dispersion, exchange-induced chemical shifts or rapidly-relaxing components of relaxation decays. Some theoretical underpinnings of the quantitative description of global dynamics of proteins on the surface of very high molecular weight particles (nanoparticles) are discussed. Subsequently, several applications of DEST/ΔR methodology are described from a methodological perspective with an emphasis on providing examples of how kinetic and relaxation parameters for exchanging systems can be reliably extracted from NMR data for each particular model of exchange. Among exchanging systems that are not associated with high molecular weight species, we describe several exchange NMR-based studies that focus on kinetic modelling of transient pre-nucleation oligomerization of huntingtin peptides that precedes aggregation and fibril formation.

摘要

本文主要基于作者实验室过去 10 年的工作,综述了近年来涉及蛋白-配体和蛋白-蛋白相互作用的交换过程的 NMR 研究进展。我们首先简要概述了暗态交换饱和转移(DEST)和寿命线展宽(ΔR)NMR 方法的理论背景。讨论了 DEST/ΔR 方法在应用于具有中等分子量的分子体系时的一些局限性,以及如何借助密切相关的交换 NMR 技术来克服这些局限性,如 Carr-Purcell-Meiboom-Gill(CPMG)弛豫弥散度、交换诱导的化学位移或弛豫衰减的快速弛豫分量的测量。还讨论了在非常高分子量颗粒(纳米颗粒)表面上描述蛋白质整体动力学的定量描述的一些理论基础。随后,从方法学的角度描述了 DEST/ΔR 方法的几个应用,重点介绍了如何从每个特定的交换模型的 NMR 数据中可靠地提取交换体系的动力学和弛豫参数。在不涉及高分子量物质的交换体系中,我们描述了几个基于交换 NMR 的研究,这些研究集中在亨廷顿肽的瞬态成核前寡聚化的动力学建模上,该寡聚化先于聚集和纤维形成。