Prox1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche

Acetylcholine regulates intestinal epithelial secretion via muscarinic Gq-coupled receptors but its role in cell differentiation is unclear. Here, the authors show that Prox1-positive endocrine cells are sensors for the cholinergic intestinal niche and can trigger increased differentiation of entero...

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Autores principales: Moritz Middelhoff, Henrik Nienhüser, Giovanni Valenti, H. Carlo Maurer, Yoku Hayakawa, Ryota Takahashi, Woosook Kim, Zhengyu Jiang, Ermanno Malagola, Krystle Cuti, Yagnesh Tailor, Leah B. Zamechek, Bernhard W. Renz, Michael Quante, Kelley S. Yan, Timothy C. Wang
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/7eeb82d636ca4537aa0b570f2e30840f
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spelling oai:doaj.org-article:7eeb82d636ca4537aa0b570f2e30840f2021-12-02T14:40:51ZProx1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche10.1038/s41467-019-13850-72041-1723https://doaj.org/article/7eeb82d636ca4537aa0b570f2e30840f2020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13850-7https://doaj.org/toc/2041-1723Acetylcholine regulates intestinal epithelial secretion via muscarinic Gq-coupled receptors but its role in cell differentiation is unclear. Here, the authors show that Prox1-positive endocrine cells are sensors for the cholinergic intestinal niche and can trigger increased differentiation of enteroendocrine DCLK1-positive tuft cells.Moritz MiddelhoffHenrik NienhüserGiovanni ValentiH. Carlo MaurerYoku HayakawaRyota TakahashiWoosook KimZhengyu JiangErmanno MalagolaKrystle CutiYagnesh TailorLeah B. ZamechekBernhard W. RenzMichael QuanteKelley S. YanTimothy C. WangNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-14 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Moritz Middelhoff
Henrik Nienhüser
Giovanni Valenti
H. Carlo Maurer
Yoku Hayakawa
Ryota Takahashi
Woosook Kim
Zhengyu Jiang
Ermanno Malagola
Krystle Cuti
Yagnesh Tailor
Leah B. Zamechek
Bernhard W. Renz
Michael Quante
Kelley S. Yan
Timothy C. Wang
Prox1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche
description Acetylcholine regulates intestinal epithelial secretion via muscarinic Gq-coupled receptors but its role in cell differentiation is unclear. Here, the authors show that Prox1-positive endocrine cells are sensors for the cholinergic intestinal niche and can trigger increased differentiation of enteroendocrine DCLK1-positive tuft cells.
format article
author Moritz Middelhoff
Henrik Nienhüser
Giovanni Valenti
H. Carlo Maurer
Yoku Hayakawa
Ryota Takahashi
Woosook Kim
Zhengyu Jiang
Ermanno Malagola
Krystle Cuti
Yagnesh Tailor
Leah B. Zamechek
Bernhard W. Renz
Michael Quante
Kelley S. Yan
Timothy C. Wang
author_facet Moritz Middelhoff
Henrik Nienhüser
Giovanni Valenti
H. Carlo Maurer
Yoku Hayakawa
Ryota Takahashi
Woosook Kim
Zhengyu Jiang
Ermanno Malagola
Krystle Cuti
Yagnesh Tailor
Leah B. Zamechek
Bernhard W. Renz
Michael Quante
Kelley S. Yan
Timothy C. Wang
author_sort Moritz Middelhoff
title Prox1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche
title_short Prox1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche
title_full Prox1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche
title_fullStr Prox1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche
title_full_unstemmed Prox1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche
title_sort prox1-positive cells monitor and sustain the murine intestinal epithelial cholinergic niche
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/7eeb82d636ca4537aa0b570f2e30840f
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