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单分子荧光共振能量转移技术在无序蛋白质研究中的应用

Single-Molecule FRET of Intrinsically Disordered Proteins.

机构信息

Department of Biology and Biological Engineering, California Institute of Technology, Pasadena, California 91125, USA; email:

Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA; email:

出版信息

Annu Rev Phys Chem. 2020 Apr 20;71:391-414. doi: 10.1146/annurev-physchem-012420-104917. Epub 2020 Feb 25.

Abstract

Intrinsically disordered proteins (IDPs) are now widely recognized as playing critical roles in a broad range of cellular functions as well as being implicated in diverse diseases. Their lack of stable secondary structure and tertiary interactions, coupled with their sensitivity to measurement conditions, stymies many traditional structural biology approaches. Single-molecule Förster resonance energy transfer (smFRET) is now widely used to characterize the physicochemical properties of these proteins in isolation and is being increasingly applied to more complex assemblies and experimental environments. This review provides an overview of confocal diffusion-based smFRET as an experimental tool, including descriptions of instrumentation, data analysis, and protein labeling. Recent papers are discussed that illustrate the unique capability of smFRET to provide insight into aggregation-prone IDPs, protein-protein interactions involving IDPs, and IDPs in complex experimental milieus.

摘要

无规卷曲蛋白(IDPs)现在被广泛认为在广泛的细胞功能中发挥关键作用,并与多种疾病有关。它们缺乏稳定的二级结构和三级相互作用,加上它们对测量条件的敏感性,阻碍了许多传统的结构生物学方法。单分子Förster 共振能量转移(smFRET)现在被广泛用于描述这些蛋白质在分离状态下的理化性质,并且越来越多地应用于更复杂的组装体和实验环境。本综述概述了基于共焦扩散的 smFRET 作为一种实验工具,包括仪器描述、数据分析和蛋白质标记。讨论了最近的论文,这些论文说明了 smFRET 具有独特的能力,可以深入了解易聚集的 IDPs、涉及 IDPs 的蛋白质-蛋白质相互作用以及复杂实验环境中的 IDPs。

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