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Patch-Clamp Fluorometry: Electrophysiology meets Fluorescence

机译:膜片钳荧光法:电生理学符合荧光

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摘要

Ion channels and transporters are membrane proteins whose functions are driven by conformational changes. Classical biophysical techniques provide insight into either the structure or the function of these proteins, but a full understanding of their behavior requires a correlation of both these aspects in time. Patch-clamp and voltage-clamp fluorometry combine spectroscopic and electrophysiological techniques to simultaneously detect conformational changes and ionic currents across the membrane. Since its introduction, patch-clamp fluorometry has been responsible for invaluable advances in our knowledge of ion channel biophysics. Over the years, the technique has been applied to many different ion channel families to address several biophysical questions with a variety of spectroscopic approaches and electrophysiological configurations. This review illustrates the strength and the flexibility of patch-clamp fluorometry, demonstrating its potential as a tool for future research.
机译:离子通道和转运蛋白是膜蛋白,其功能由构象变化驱动。经典的生物物理技术可以洞悉这些蛋白质的结构或功能,但要全面了解其行为,需要及时将这两个方面联系起来。膜片钳和电压钳荧光法结合了光谱学和电生理技术,可同时检测整个膜的构象变化和离子电流。自从其问世以来,膜片钳荧光法一直是我们离子通道生物物理学知识的宝贵进步。多年来,该技术已应用到许多不同的离子通道家族中,以各种光谱方法和电生理结构解决了几个生物物理问题。这篇综述阐明了膜片钳荧光法的强度和灵活性,证明了其作为未来研究工具的潜力。

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