Segregated cation flux by TPC2 biases Ca2+ signaling through lysosomes

Author:

Yuan Yu,Jaślan DawidORCID,Rahman TaufiqORCID,Bolsover Stephen R.,Arige Vikas,Wagner Larry E.,Abrahamian CarlaORCID,Tang Rachel,Keller MarcoORCID,Hartmann JonasORCID,Rosato Anna S.,Weiden Eva-MariaORCID,Bracher Franz,Yule David I.ORCID,Grimm ChristianORCID,Patel SandipORCID

Abstract

AbstractTwo-pore channels are endo-lysosomal cation channels with malleable selectivity filters that drive endocytic ion flux and membrane traffic. Here we show that TPC2 can differentially regulate its cation permeability when co-activated by its endogenous ligands, NAADP and PI(3,5)P2. Whereas NAADP rendered the channel Ca2+-permeable and PI(3,5)P2 rendered the channel Na+-selective, a combination of the two increased Ca2+ but not Na+ flux. Mechanistically, this was due to an increase in Ca2+ permeability independent of changes in ion selectivity. Functionally, we show that cell permeable NAADP and PI(3,5)P2 mimetics synergistically activate native TPC2 channels in live cells, globalizing cytosolic Ca2+ signals and regulating lysosomal pH and motility. Our data reveal that flux of different ions through the same pore can be independently controlled and identify TPC2 as a likely coincidence detector that optimizes lysosomal Ca2+ signaling.

Funder

RCUK | Biotechnology and Biological Sciences Research Council

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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