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电压钳荧光法在推进酸敏感离子通道等离子通道机制的机制理解方面的应用。

Voltage-clamp fluorometry for advancing mechanistic understanding of ion channel mechanisms with a focus on acid-sensing ion channels.

机构信息

Department of Biomedical Sciences, University of Lausanne, 1011 Lausanne, Switzerland.

出版信息

Biochem Soc Trans. 2024 Oct 30;52(5):2167-2177. doi: 10.1042/BST20240165.

Abstract

Voltage-clamp fluorometry (VCF) has revolutionized the study of ion channels by combining electrophysiology with fluorescence spectroscopy. VCF allows ion channel researchers to link dynamic structural changes, measured in real time, to function. Acid-sensing ion channels (ASICs) are Na+-permeable non-voltage-gated ion channels of the central and peripheral nervous system. They function as pH sensors, triggering neuronal excitation when pH decreases. Animal studies have shown the importance of ASICs for pain and fear sensation, learning, and neurodegeneration following ischaemic stroke. This review explores the technical bases and various developments of VCF, including fluorescence resonance energy transfer and the use of unnatural fluorescent amino acids. We provide an overview of VCF applications with a focus on ASICs, detailing how VCF has unveiled proton-induced conformational changes in key regions such as the acid pocket, wrist, and pore, crucial for understanding transitions between closed, open, and desensitized states.

摘要

电压钳荧光法 (VCF) 通过将电生理学与荧光光谱学相结合,彻底改变了离子通道的研究。VCF 允许离子通道研究人员将实时测量的动态结构变化与功能联系起来。酸感应离子通道 (ASICs) 是中枢和外周神经系统中具有 Na+通透性的非电压门控离子通道。它们作为 pH 传感器发挥作用,当 pH 值下降时会引发神经元兴奋。动物研究表明,ASICs 在疼痛和恐惧感觉、学习以及缺血性中风后的神经退行性变中具有重要作用。本文探讨了 VCF 的技术基础和各种发展,包括荧光共振能量转移和非天然荧光氨基酸的应用。我们提供了 VCF 应用的概述,重点介绍了 ASICs,详细说明了 VCF 如何揭示了酸口袋、手腕和孔等关键区域中质子诱导的构象变化,这对于理解关闭、开放和脱敏状态之间的转变至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e39c/11555705/75f1d48bf446/BST-52-2167-g0001.jpg

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