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Dysregulated Immune Responses by ASK1 Deficiency Alter Epithelial Progenitor Cell Fate and Accelerate Metaplasia Development during H. pylori Infection

The mechanism of H. pylori-induced atrophy and metaplasia has not been fully understood. Here, we demonstrate the novel role of Apoptosis signal-regulating kinase 1 (ASK1) and downstream MAPKs as a regulator of host immune responses and epithelial maintenance against H. pylori infection. ASK1 gene d...

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Autores principales: Hayakawa, Yoku, Hirata, Yoshihiro, Hata, Masahiro, Tsuboi, Mayo, Oya, Yukiko, Kurokawa, Ken, Abe, Sohei, Arai, Junya, Suzuki, Nobumi, Nakagawa, Hayato, Fujiwara, Hiroaki, Tateishi, Keisuke, Maeda, Shin, Koike, Kazuhiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7765114/
https://www.ncbi.nlm.nih.gov/pubmed/33542169
http://dx.doi.org/10.3390/microorganisms8121995
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author Hayakawa, Yoku
Hirata, Yoshihiro
Hata, Masahiro
Tsuboi, Mayo
Oya, Yukiko
Kurokawa, Ken
Abe, Sohei
Arai, Junya
Suzuki, Nobumi
Nakagawa, Hayato
Fujiwara, Hiroaki
Tateishi, Keisuke
Maeda, Shin
Koike, Kazuhiko
author_facet Hayakawa, Yoku
Hirata, Yoshihiro
Hata, Masahiro
Tsuboi, Mayo
Oya, Yukiko
Kurokawa, Ken
Abe, Sohei
Arai, Junya
Suzuki, Nobumi
Nakagawa, Hayato
Fujiwara, Hiroaki
Tateishi, Keisuke
Maeda, Shin
Koike, Kazuhiko
author_sort Hayakawa, Yoku
collection PubMed
description The mechanism of H. pylori-induced atrophy and metaplasia has not been fully understood. Here, we demonstrate the novel role of Apoptosis signal-regulating kinase 1 (ASK1) and downstream MAPKs as a regulator of host immune responses and epithelial maintenance against H. pylori infection. ASK1 gene deficiency resulted in enhanced inflammation with numerous inflammatory cells including Gr-1+CD11b+ myeloid-derived suppressor cells (MDSCs) recruited into the infected stomach. Increase of IL-1β release from apoptotic macrophages and enhancement of TH1-polarized immune responses caused STAT1 and NF-κB activation in epithelial cells in ASK1 knockout mice. Dysregulated immune and epithelial activation in ASK1 knockout mice led to dramatic expansion of gastric progenitor cells and massive metaplasia development. Bone marrow transplantation experiments revealed that ASK1 in inflammatory cells is critical for inducing immune disorder and metaplastic changes in epithelium, while ASK1 in epithelial cells regulates cell proliferation in stem/progenitor zone without changes in inflammation and differentiation. These results suggest that H. pylori-induced immune cells may regulate epithelial homeostasis and cell fate as an inflammatory niche via ASK1 signaling.
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spelling pubmed-77651142020-12-27 Dysregulated Immune Responses by ASK1 Deficiency Alter Epithelial Progenitor Cell Fate and Accelerate Metaplasia Development during H. pylori Infection Hayakawa, Yoku Hirata, Yoshihiro Hata, Masahiro Tsuboi, Mayo Oya, Yukiko Kurokawa, Ken Abe, Sohei Arai, Junya Suzuki, Nobumi Nakagawa, Hayato Fujiwara, Hiroaki Tateishi, Keisuke Maeda, Shin Koike, Kazuhiko Microorganisms Article The mechanism of H. pylori-induced atrophy and metaplasia has not been fully understood. Here, we demonstrate the novel role of Apoptosis signal-regulating kinase 1 (ASK1) and downstream MAPKs as a regulator of host immune responses and epithelial maintenance against H. pylori infection. ASK1 gene deficiency resulted in enhanced inflammation with numerous inflammatory cells including Gr-1+CD11b+ myeloid-derived suppressor cells (MDSCs) recruited into the infected stomach. Increase of IL-1β release from apoptotic macrophages and enhancement of TH1-polarized immune responses caused STAT1 and NF-κB activation in epithelial cells in ASK1 knockout mice. Dysregulated immune and epithelial activation in ASK1 knockout mice led to dramatic expansion of gastric progenitor cells and massive metaplasia development. Bone marrow transplantation experiments revealed that ASK1 in inflammatory cells is critical for inducing immune disorder and metaplastic changes in epithelium, while ASK1 in epithelial cells regulates cell proliferation in stem/progenitor zone without changes in inflammation and differentiation. These results suggest that H. pylori-induced immune cells may regulate epithelial homeostasis and cell fate as an inflammatory niche via ASK1 signaling. MDPI 2020-12-14 /pmc/articles/PMC7765114/ /pubmed/33542169 http://dx.doi.org/10.3390/microorganisms8121995 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hayakawa, Yoku
Hirata, Yoshihiro
Hata, Masahiro
Tsuboi, Mayo
Oya, Yukiko
Kurokawa, Ken
Abe, Sohei
Arai, Junya
Suzuki, Nobumi
Nakagawa, Hayato
Fujiwara, Hiroaki
Tateishi, Keisuke
Maeda, Shin
Koike, Kazuhiko
Dysregulated Immune Responses by ASK1 Deficiency Alter Epithelial Progenitor Cell Fate and Accelerate Metaplasia Development during H. pylori Infection
title Dysregulated Immune Responses by ASK1 Deficiency Alter Epithelial Progenitor Cell Fate and Accelerate Metaplasia Development during H. pylori Infection
title_full Dysregulated Immune Responses by ASK1 Deficiency Alter Epithelial Progenitor Cell Fate and Accelerate Metaplasia Development during H. pylori Infection
title_fullStr Dysregulated Immune Responses by ASK1 Deficiency Alter Epithelial Progenitor Cell Fate and Accelerate Metaplasia Development during H. pylori Infection
title_full_unstemmed Dysregulated Immune Responses by ASK1 Deficiency Alter Epithelial Progenitor Cell Fate and Accelerate Metaplasia Development during H. pylori Infection
title_short Dysregulated Immune Responses by ASK1 Deficiency Alter Epithelial Progenitor Cell Fate and Accelerate Metaplasia Development during H. pylori Infection
title_sort dysregulated immune responses by ask1 deficiency alter epithelial progenitor cell fate and accelerate metaplasia development during h. pylori infection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7765114/
https://www.ncbi.nlm.nih.gov/pubmed/33542169
http://dx.doi.org/10.3390/microorganisms8121995
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