Ion currents through Kir potassium channels are gated by anionic lipids

Author:

Jin Ruitao,He Sitong,Black Katrina A.,Clarke Oliver B.,Wu Di,Bolla Jani R.,Johnson Paul,Periasamy Agalya,Wardak Ahmad,Czabotar Peter,Colman Peter M.,Robinson Carol V.,Laver Derek,Smith Brian J.,Gulbis Jacqueline M.ORCID

Abstract

AbstractIon currents through potassium channels are gated. Constriction of the ion conduction pathway at the inner helix bundle, the textbook ‘gate’ of Kir potassium channels, has been shown to be an ineffective permeation control, creating a rift in our understanding of how these channels are gated. Here we present the first evidence that anionic lipids act as interactive response elements sufficient to gate potassium conduction. We demonstrate the limiting barrier to K+ permeation lies within the ion conduction pathway and show that this ‘gate’ is operated by the fatty acyl tails of lipids that infiltrate the conduction pathway via fenestrations in the walls of the pore. Acyl tails occupying a surface groove extending from the cytosolic interface to the conduction pathway provide a potential means of relaying cellular signals, mediated by anionic lipid head groups bound at the canonical lipid binding site, to the internal gate.

Publisher

Cold Spring Harbor Laboratory

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