How to Fluorescently Label the Potassium Channel: A Case in hERG
Xiaomeng Zhang, Beilei Wang, Zhenzhen Liu, Yubin Zhou, Lüpei Du
Abstract
Xiaomeng Zhang, Beilei Wang, Zhenzhen Liu, Yubin Zhou, Lüpei Du
Abstract
hERG (Human ether-a-go-go-related gene) potassium channel, which plays an essential role in cardiac action potential repolarization, is responsible for inherited and druginduced long QT syndrome. Recently, the Cryo-EM structure capturing the open conformation of hERG channel was determined, thus pushing the study on hERG channel at 3.8 Å resolution. This report focuses primarily on summarizing the design rationale and application of several fluorescent probes that target hERG channels, which enables dynamic and real-time monitoring of potassium pore channel affinity to further advance the understanding of the channels.
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hERG (Human ether-a-go-go-related gene) potassium channel, which plays an essential role in cardiac action potential repolarization, is responsible for inherited and druginduced long QT syndrome. Recently, the Cryo-EM structure capturing the open conformation of hERG channel was determined, thus pushing the study on hERG channel at 3.8 Å resolution. This report focuses primarily on summarizing the design rationale and application of several fluorescent probes that target hERG channels, which enables dynamic and real-time monitoring of potassium pore channel affinity to further advance the understanding of the channels.
Key concepts: hERG, Potassium channel, Repolarization, Cardiac action potential, Long QT syndrome, Potassium channel blocker, Chemistry, Biophysics