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Cryo-EM Structure of K+-Bound hERG Channel Complexed with the Blocker Astemizole.

Authors :
Asai, Tatsuki
Adachi, Naruhiko
Moriya, Toshio
Oki, Hideyuki
Maru, Takamitsu
Kawasaki, Masato
Suzuki, Kano
Chen, Sisi
Ishii, Ryohei
Yonemori, Kazuko
Igaki, Shigeru
Yasuda, Satoshi
Ogasawara, Satoshi
Senda, Toshiya
Murata, Takeshi
Source :
Structure. Mar2021, Vol. 29 Issue 3, p203-203. 1p.
Publication Year :
2021

Abstract

The hERG channel is a voltage-gated potassium channel involved in cardiac repolarization. Off-target hERG inhibition by drugs has become a critical issue in the pharmaceutical industry. The three-dimensional structure of the hERG channel was recently reported at 3.8-Å resolution using cryogenic electron microscopy (cryo-EM). However, the drug inhibition mechanism remains unclear because of the scarce structural information regarding the drug- and potassium-bound hERG channels. In this study, we obtained the cryo-EM density map of potassium-bound hERG channel complexed with astemizole, a well-known hERG inhibitor that increases risk of potentially fatal arrhythmia, at 3.5-Å resolution. The structure suggested that astemizole inhibits potassium conduction by binding directly below the selectivity filter. Furthermore, we propose a possible binding model of astemizole to the hERG channel and provide insights into the unusual sensitivity of hERG to several drugs. • Cryo-EM structure of hERG channel complexed with astemizole was revealed • Potassium ions were found in the selectivity filter of hERG channel structures • Astemizole inhibits K+ flux by occluding the intracellular pore of selectivity filter • Astemizole has several types of interactions with the binding site Asai et al. determined the cryo-EM structures of the hERG channel in the presence and absence of astemizole, a well-known hERG inhibitor that increases the risk of potentially fatal arrhythmia. The structures propose a possible inhibition model of astemizole to the hERG channel. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09692126
Volume :
29
Issue :
3
Database :
Academic Search Index
Journal :
Structure
Publication Type :
Academic Journal
Accession number :
148986058
Full Text :
https://doi.org/10.1016/j.str.2020.12.007