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Agonist-mediated switching of ion selectivity in TPC2 differentially promotes lysosomal function

Authors :
Meghan T. Miller
Sandip Patel
Sandra Burgstaller
Anna Scotto Rosato
Franz Bracher
Thomas Gudermann
Nicole Urban
Einar Krogsaeter
Marco Keller
Johann Schredelseker
Yu-Kai Chao
Katharina Jacob
Christian Grimm
Susanne Gerndt
Christian Wahl-Schott
Ong Nam Phuong Nguyen
Martin Biel
Yu Yuan
Susanna Zierler
Cheng-Chang Chen
Roland Malli
Michael Schaefer
Angelika M. Vollmar
Source :
eLife, eLife, Vol 9 (2020)
Publication Year :
2020
Publisher :
eLife Sciences Publications, Ltd, 2020.

Abstract

Ion selectivity is a defining feature of a given ion channel and is considered immutable. Here we show that ion selectivity of the lysosomal ion channel TPC2, which is hotly debated (Calcraft et al., 2009; Guo et al., 2017; Jha et al., 2014; Ruas et al., 2015; Wang et al., 2012), depends on the activating ligand. A high-throughput screen identified two structurally distinct TPC2 agonists. One of these evoked robust Ca2+-signals and non-selective cation currents, the other weaker Ca2+-signals and Na+-selective currents. These properties were mirrored by the Ca2+-mobilizing messenger, NAADP and the phosphoinositide, PI(3,5)P2, respectively. Agonist action was differentially inhibited by mutation of a single TPC2 residue and coupled to opposing changes in lysosomal pH and exocytosis. Our findings resolve conflicting reports on the permeability and gating properties of TPC2 and they establish a new paradigm whereby a single ion channel mediates distinct, functionally-relevant ionic signatures on demand.

Details

Language :
English
ISSN :
2050084X
Volume :
9
Database :
OpenAIRE
Journal :
eLife
Accession number :
edsair.doi.dedup.....e44275ad92325ce9e0def69094ca0b4f