학술논문

Expression of Ca2+-permeable two-pore channels rescues NAADP signalling in TPC-deficient cells.
Document Type
Article
Source
EMBO Journal. Jul2015, Vol. 34 Issue 13, p1743-1758. 16p. 1 Diagram, 7 Graphs.
Subject
*CALCIUM channels
*NAADP (Nucleotide)
*CELLULAR signal transduction
*GENE expression
*LYSOSOMES
*ELECTROPHYSIOLOGY
Language
ISSN
0261-4189
Abstract
The second messenger NAADP triggers Ca2+ release from endo-lysosomes. Although two-pore channels ( TPCs) have been proposed to be regulated by NAADP, recent studies have challenged this. By generating the first mouse line with demonstrable absence of both Tpcn1 and Tpcn2 expression (Tpcn1/2−/− ), we show that the loss of endogenous TPCs abolished NAADP-dependent Ca2+ responses as assessed by single-cell Ca2+ imaging or patch-clamp of single endo-lysosomes. In contrast, currents stimulated by PI(3,5)P2 were only partially dependent on TPCs. In Tpcn1/2−/− cells, NAADP sensitivity was restored by re-expressing wild-type TPCs, but not by mutant versions with impaired Ca2+-permeability, nor by TRPML1. Another mouse line formerly reported as TPC-null likely expresses truncated TPCs, but we now show that these truncated proteins still support NAADP-induced Ca2+ release. High-affinity [32P] NAADP binding still occurs in Tpcn1/2−/− tissue, suggesting that NAADP regulation is conferred by an accessory protein. Altogether, our data establish TPCs as Ca2+-permeable channels indispensable for NAADP signalling. [ABSTRACT FROM AUTHOR]