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Arrestin domain containing 3 promotes Helicobacter pylori–associated gastritis by regulating protease-activated receptor 1

Arrestin domain containing 3 (ARRDC3) represents a newly discovered α-arrestin involved in obesity, inflammation, and cancer. Here, we demonstrate a proinflammation role of ARRDC3 in Helicobacter pylori–associated gastritis. Increased ARRDC3 was detected in gastric mucosa of patients and mice infect...

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Autores principales: Liu, Yu-gang, Teng, Yong-sheng, Shan, Zhi-guo, Cheng, Ping, Hao, Chuan-jie, Lv, Yi-pin, Mao, Fang-yuan, Yang, Shi-ming, Chen, Weisan, Zhao, Yong-liang, You, Nan, Zou, Quan-ming, Zhuang, Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455081/
https://www.ncbi.nlm.nih.gov/pubmed/32634127
http://dx.doi.org/10.1172/jci.insight.135849
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author Liu, Yu-gang
Teng, Yong-sheng
Shan, Zhi-guo
Cheng, Ping
Hao, Chuan-jie
Lv, Yi-pin
Mao, Fang-yuan
Yang, Shi-ming
Chen, Weisan
Zhao, Yong-liang
You, Nan
Zou, Quan-ming
Zhuang, Yuan
author_facet Liu, Yu-gang
Teng, Yong-sheng
Shan, Zhi-guo
Cheng, Ping
Hao, Chuan-jie
Lv, Yi-pin
Mao, Fang-yuan
Yang, Shi-ming
Chen, Weisan
Zhao, Yong-liang
You, Nan
Zou, Quan-ming
Zhuang, Yuan
author_sort Liu, Yu-gang
collection PubMed
description Arrestin domain containing 3 (ARRDC3) represents a newly discovered α-arrestin involved in obesity, inflammation, and cancer. Here, we demonstrate a proinflammation role of ARRDC3 in Helicobacter pylori–associated gastritis. Increased ARRDC3 was detected in gastric mucosa of patients and mice infected with H. pylori. ARRDC3 in gastric epithelial cells (GECs) was induced by H. pylori, regulated by ERK and PI3K-AKT pathways in a cagA-dependent manner. Human gastric ARRDC3 correlated with the severity of gastritis, and mouse ARRDC3 from non-BM–derived cells promoted gastric inflammation. This inflammation was characterized by the CXCR2-dependent influx of CD45(+)CD11b(+)Ly6C(–)Ly6G(+) neutrophils, whose migration was induced via the ARRDC3-dependent production of CXCL2 by GECs. Importantly, gastric inflammation was attenuated in Arrdc3(–/–) mice but increased in protease-activated receptor 1(–/–) (Par1(–/–)) mice. Mechanistically, ARRDC3 in GECs directly interacted with PAR1 and negatively regulated PAR1 via ARRDC3-mediated lysosomal degradation, which abrogated the suppression of CXCL2 production and following neutrophil chemotaxis by PAR1, thereby contributing to the development of H. pylori–associated gastritis. This study identifies a regulatory network involving H. pylori, GECs, ARRDC3, PAR1, and neutrophils, which collectively exert a proinflammatory effect within the gastric microenvironment. Efforts to inhibit this ARRDC3-dependent pathway may provide valuable strategies in treating of H. pylori–associated gastritis.
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spelling pubmed-74550812020-09-01 Arrestin domain containing 3 promotes Helicobacter pylori–associated gastritis by regulating protease-activated receptor 1 Liu, Yu-gang Teng, Yong-sheng Shan, Zhi-guo Cheng, Ping Hao, Chuan-jie Lv, Yi-pin Mao, Fang-yuan Yang, Shi-ming Chen, Weisan Zhao, Yong-liang You, Nan Zou, Quan-ming Zhuang, Yuan JCI Insight Research Article Arrestin domain containing 3 (ARRDC3) represents a newly discovered α-arrestin involved in obesity, inflammation, and cancer. Here, we demonstrate a proinflammation role of ARRDC3 in Helicobacter pylori–associated gastritis. Increased ARRDC3 was detected in gastric mucosa of patients and mice infected with H. pylori. ARRDC3 in gastric epithelial cells (GECs) was induced by H. pylori, regulated by ERK and PI3K-AKT pathways in a cagA-dependent manner. Human gastric ARRDC3 correlated with the severity of gastritis, and mouse ARRDC3 from non-BM–derived cells promoted gastric inflammation. This inflammation was characterized by the CXCR2-dependent influx of CD45(+)CD11b(+)Ly6C(–)Ly6G(+) neutrophils, whose migration was induced via the ARRDC3-dependent production of CXCL2 by GECs. Importantly, gastric inflammation was attenuated in Arrdc3(–/–) mice but increased in protease-activated receptor 1(–/–) (Par1(–/–)) mice. Mechanistically, ARRDC3 in GECs directly interacted with PAR1 and negatively regulated PAR1 via ARRDC3-mediated lysosomal degradation, which abrogated the suppression of CXCL2 production and following neutrophil chemotaxis by PAR1, thereby contributing to the development of H. pylori–associated gastritis. This study identifies a regulatory network involving H. pylori, GECs, ARRDC3, PAR1, and neutrophils, which collectively exert a proinflammatory effect within the gastric microenvironment. Efforts to inhibit this ARRDC3-dependent pathway may provide valuable strategies in treating of H. pylori–associated gastritis. American Society for Clinical Investigation 2020-08-06 /pmc/articles/PMC7455081/ /pubmed/32634127 http://dx.doi.org/10.1172/jci.insight.135849 Text en © 2020 Liu et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Liu, Yu-gang
Teng, Yong-sheng
Shan, Zhi-guo
Cheng, Ping
Hao, Chuan-jie
Lv, Yi-pin
Mao, Fang-yuan
Yang, Shi-ming
Chen, Weisan
Zhao, Yong-liang
You, Nan
Zou, Quan-ming
Zhuang, Yuan
Arrestin domain containing 3 promotes Helicobacter pylori–associated gastritis by regulating protease-activated receptor 1
title Arrestin domain containing 3 promotes Helicobacter pylori–associated gastritis by regulating protease-activated receptor 1
title_full Arrestin domain containing 3 promotes Helicobacter pylori–associated gastritis by regulating protease-activated receptor 1
title_fullStr Arrestin domain containing 3 promotes Helicobacter pylori–associated gastritis by regulating protease-activated receptor 1
title_full_unstemmed Arrestin domain containing 3 promotes Helicobacter pylori–associated gastritis by regulating protease-activated receptor 1
title_short Arrestin domain containing 3 promotes Helicobacter pylori–associated gastritis by regulating protease-activated receptor 1
title_sort arrestin domain containing 3 promotes helicobacter pylori–associated gastritis by regulating protease-activated receptor 1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455081/
https://www.ncbi.nlm.nih.gov/pubmed/32634127
http://dx.doi.org/10.1172/jci.insight.135849
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