eLife · 2019 · 45 citations · 38 references
Mammalian two-pore-channels (TPC1, 2; <i>TPCN1, TPCN2</i>) are ubiquitously- expressed, PI(3,5)P<sub>2</sub>-activated, Na<sup>+</sup>-selective channels in the endosomes and lysosomes that regulate luminal pH homeostasis, membrane trafficking, and <i>Ebola</i> viral infection. Whereas the channel activity of TPC1 is strongly dependent on membrane voltage, TPC2 lacks such voltage dependence despite the presence of the presumed 'S4 voltage-sensing' domains. By performing high-throughput screening followed by lysosomal electrophysiology, here we identified a class of tricyclic anti-depressants (TCAs) as small-molecule agonists of TPC channels. TCAs activate both TPC1 and TPC2 in a voltage-dependent manner, referred to as <u>Ly</u>sosomal <u>Na</u><sup>+</sup> channel <u>V</u>oltage-dependent <u>A</u>ctivators (LyNa-VAs). We also identified another compound which, like PI(3,5)P<sub>2</sub>, activates TPC2 independent of voltage, suggesting the existence of agonist-specific gating mechanisms. Our identification of small-molecule TPC agonists should facilitate the studies of the cell biological roles of TPCs and can also readily explain the reported effects of TCAs in the modulation of autophagy and lysosomal functions.
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NAADP mobilizes calcium from acidic organelles through two-pore channels
Peter Calcraft, Margarida Ruas, Zui Pan et al. · Nature · 2009 · 740 citations · Full text
MCOLN1 is a ROS sensor in lysosomes that regulates autophagy
Xiaoli Zhang, Xiping Cheng, Lu Yu et al. · Nature Communications · 2016 · 535 citations · Full text