用于分析受体低聚物在信号转导中的作用的三色单分子成像

Hideaki Yoshimura
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引用次数: 0

摘要

膜受体提供各种细胞外刺激的接口,将信号转导到细胞内。受体需要具有高灵敏度和降噪等相互矛盾的特性,以保持细胞的稳态和适当的反应。为了了解这些功能实现的机制,对质膜上受体和信号分子的运动进行单分子监测是最直接的方法之一。本文综述了近年来受体单分子成像的研究进展,包括作者在G蛋白偶联受体三色单分子成像方面的研究进展。在此基础上,阐述了单分子成像技术在研究受体功能机制方面的优势和前景。
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Triple-color single-molecule imaging for analysis of the role of receptor oligomers in signal transduction
Membrane receptors provide interfaces of various extracellular stimuli to transduce the signal into the cell. Receptors are required to possess such conflicting properties as high sensitivity and noise reduction for the cell to keep its homeostasis and appropriate responses. To understand the mechanisms by which these functions are achieved, single-molecule monitoring of the motilities of receptors and signaling molecules on the plasma membrane is one of the most direct approaches. This review article introduces several recent single-molecule imaging studies of receptors, including the author’s recent work on triple-color single-molecule imaging of G protein-coupled receptors. Based on these researches, advantages and perspectives of the single-molecule imaging approach to solving the mechanisms of receptor functions are illustrated.
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