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CALHM3 Is Essential for Rapid Ion Channel-Mediated Purinergic Neurotransmission of GPCR-Mediated Tastes

Authors :
J. Kevin Foskett
Zhongming Ma
Naomi Niisato
Jorge Henao-Mejia
Henry Hoff
Ichiro Matsumoto
Jason C. Lim
Akiyuki Taruno
Yoshinori Marunaka
Claire H. Mitchell
Masafumi Jyotaki
Jessica E. Tanis
Makoto Ohmoto
Hiroaki Miyazaki
Ian Parker
Robert J. Lee
Riley Payne
Angelo Demuro
Michael G. Tordoff
Source :
Neuron. 98:547-561.e10
Publication Year :
2018
Publisher :
Elsevier BV, 2018.

Abstract

Summary Binding of sweet, umami, and bitter tastants to G protein-coupled receptors (GPCRs) in apical membranes of type II taste bud cells (TBCs) triggers action potentials that activate a voltage-gated nonselective ion channel to release ATP to gustatory nerves mediating taste perception. Although calcium homeostasis modulator 1 (CALHM1) is necessary for ATP release, the molecular identification of the channel complex that provides the conductive ATP-release mechanism suitable for action potential-dependent neurotransmission remains to be determined. Here we show that CALHM3 interacts with CALHM1 as a pore-forming subunit in a CALHM1/CALHM3 hexameric channel, endowing it with fast voltage-activated gating identical to that of the ATP-release channel in vivo . Calhm3 is co-expressed with Calhm1 exclusively in type II TBCs, and its genetic deletion abolishes taste-evoked ATP release from taste buds and GPCR-mediated taste perception. Thus, CALHM3, together with CALHM1, is essential to form the fast voltage-gated ATP-release channel in type II TBCs required for GPCR-mediated tastes.

Details

ISSN :
08966273
Volume :
98
Database :
OpenAIRE
Journal :
Neuron
Accession number :
edsair.doi.dedup.....6f7e5bbef2c686bd0ccf219f6f2e8563
Full Text :
https://doi.org/10.1016/j.neuron.2018.03.043