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A Starting Point for Fluorescence-Based Single-Molecule Measurements in Biomolecular Research

机译:生物分子研究中基于荧光的单分子测量的起点

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摘要

Single-molecule fluorescence techniques are ideally suited to provide information about the structure-function-dynamics relationship of a biomolecule as static and dynamic heterogeneity can be easily detected. However, what type of single-molecule fluorescence technique is suited for which kind of biological question and what are the obstacles on the way to a successful single-molecule microscopy experiment? In this review, we provide practical insights into fluorescence-based single-molecule experiments aiming for scientists who wish to take their experiments to the single-molecule level. We especially focus on fluorescence resonance energy transfer (FRET) experiments as these are a widely employed tool for the investigation of biomolecular mechanisms. We will guide the reader through the most critical steps that determine the success and quality of diffusion-based confocal and immobilization-based total internal reflection fluorescence microscopy. We discuss the specific chemical and photophysical requirements that make fluorescent dyes suitable for single-molecule fluorescence experiments. Most importantly, we review recently emerged photoprotection systems as well as passivation and immobilization strategies that enable the observation of fluorescently labeled molecules under biocompatible conditions. Moreover, we discuss how the optical single-molecule toolkit has been extended in recent years to capture the physiological complexity of a cell making it even more relevant for biological research.
机译:单分子荧光技术非常适合提供有关生物分子的结构-功能-动力学关系的信息,因为可以轻松检测到静态和动态异质性。但是,哪种类型的单分子荧光技术适合哪种生物学问题,成功进行单分子显微镜实验的障碍是什么?在这篇综述中,我们为基于荧光的单分子实验提供了实用的见解,旨在为希望将其实验提高到单分子水平的科学家们。我们特别关注荧光共振能量转移(FRET)实验,因为这些是研究生物分子机制的广泛使用的工具。我们将指导读者完成最关键的步骤,这些步骤将决定基于扩散的共聚焦和基于固定的全内反射荧光显微镜的成功与否。我们讨论使荧光染料适用于单分子荧光实验的特定化学和光物理要求。最重要的是,我们回顾了最近出现的光保护系统以及钝化和固定化策略,这些策略能够在生物相容性条件下观察荧光标记的分子。此外,我们讨论了近年来光学单分子工具包如何扩展以捕获细胞的生理复杂性,使其与生物学研究更加相关。

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