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The molecular basis for an allosteric inhibition of K+-flux gating in K2P channels

Authors :
Isabella Gensler
Thomas Baukrowitz
Niels Decher
Aytug K. Kiper
Phillip J. Stansfeld
Marcus Schewe
Wendy González
Diana Aser
Mauricio Bedoya
Susanne Rinné
David Ramírez
Michael F. Netter
Kirsty S Vowinkel
Source :
eLife, Vol 8 (2019)
Publication Year :
2019
Publisher :
eLife Sciences Publications Ltd, 2019.

Abstract

Two-pore-domain potassium (K2P) channels are key regulators of many physiological and pathophysiological processes and thus emerged as promising drug targets. As for other potassium channels, there is a lack of selective blockers, since drugs preferentially bind to a conserved binding site located in the central cavity. Thus, there is a high medical need to identify novel drug-binding sites outside the conserved lipophilic central cavity and to identify new allosteric mechanisms of channel inhibition. Here, we identified a novel binding site and allosteric inhibition mechanism, disrupting the recently proposed K+-flux gating mechanism of K2Pchannels, which results in an unusual voltage-dependent block of leak channels belonging to the TASK subfamily. The new binding site and allosteric mechanism of inhibition provide structural and mechanistic insights into the gating of TASK channels and the basis for the drug design of a new class of potent blockers targeting specific types of K2Pchannels.

Details

Language :
English
Volume :
8
Database :
OpenAIRE
Journal :
eLife
Accession number :
edsair.doi.dedup.....5a22eafb9a6fc4674d02dfc4cde212fb