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Bitter taste cells in the ventricular walls of the murine brain regulate glucose homeostasis

Authors :
Qiang Yu
Igor Gamayun
Philipp Wartenberg
Qian Zhang
Sen Qiao
Soumya Kusumakshi
Sarah Candlish
Viktoria Götz
Shuping Wen
Debajyoti Das
Amanda Wyatt
Vanessa Wahl
Fabien Ectors
Kathrin Kattler
Daniela Yildiz
Vincent Prevot
Markus Schwaninger
Gaetan Ternier
Paolo Giacobini
Philippe Ciofi
Timo D. Müller
Ulrich Boehm
Source :
Nature Communications. 14(1)

Abstract

The median eminence (ME) is a circumventricular organ at the base of the brain that controls body homeostasis. Tanycytes are its specialized glial cells that constitute the ventricular walls and regulate different physiological states, however individual signaling pathways in these cells are incompletely understood. Here, we identify a functional tanycyte subpopulation that expresses key taste transduction genes including bitter taste receptors, the G protein gustducin and the gustatory ion channel TRPM5 (M5). M5 tanycytes have access to blood-borne cues via processes extended towards diaphragmed endothelial fenestrations in the ME and mediate bidirectional communication between the cerebrospinal fluid and blood. This subpopulation responds to metabolic signals including leptin and other hormonal cues and is transcriptionally reprogrammed upon fasting. Acute M5 tanycyte activation induces insulin secretion and acute diphtheria toxin-mediated M5 tanycyte depletion results in impaired glucose tolerance in diet-induced obese mice. We provide a cellular and molecular framework that defines how bitter taste cells in the ME integrate chemosensation with metabolism.

Details

Language :
English
ISSN :
20411723
Volume :
14
Issue :
1
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....48b13e6c28d36989c98a27fe554bc325
Full Text :
https://doi.org/10.1038/s41467-023-37099-3