Cargando…

Helicobacter pylori Induces IL-33 Production and Recruits ST-2 to Lipid Rafts to Exacerbate Inflammation

Helicobacter pylori colonizes human gastric epithelial cells and contributes to the development of several gastrointestinal disorders. Interleukin (IL)-33 is involved in various immune responses, with reported proinflammatory and anti-inflammatory effects, which may be associated with colitis and co...

Descripción completa

Detalles Bibliográficos
Autores principales: Kuo, Chia-Jung, Chen, Chun-Ya, Lo, Horng-Ren, Feng, Chun-Lung, Wu, Hui-Yu, Huang, Mei-Zi, Liao, Tung-Nan, Chen, Yu-An, Lai, Chih-Ho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6830106/
https://www.ncbi.nlm.nih.gov/pubmed/31640262
http://dx.doi.org/10.3390/cells8101290
_version_ 1783465710774648832
author Kuo, Chia-Jung
Chen, Chun-Ya
Lo, Horng-Ren
Feng, Chun-Lung
Wu, Hui-Yu
Huang, Mei-Zi
Liao, Tung-Nan
Chen, Yu-An
Lai, Chih-Ho
author_facet Kuo, Chia-Jung
Chen, Chun-Ya
Lo, Horng-Ren
Feng, Chun-Lung
Wu, Hui-Yu
Huang, Mei-Zi
Liao, Tung-Nan
Chen, Yu-An
Lai, Chih-Ho
author_sort Kuo, Chia-Jung
collection PubMed
description Helicobacter pylori colonizes human gastric epithelial cells and contributes to the development of several gastrointestinal disorders. Interleukin (IL)-33 is involved in various immune responses, with reported proinflammatory and anti-inflammatory effects, which may be associated with colitis and colitis-associated cancer. IL-33 induces the inflammatory cascade through its receptor, suppression of tumorigenicity-2 (ST-2). Binding of IL-33 to membrane-bound ST-2 (mST-2) recruits the IL-1 receptor accessory protein (IL-1RAcP) and activates intracellular signaling pathways. However, whether IL-33/ST-2 is triggered by H. pylori infection and whether this interaction occurs in lipid rafts remain unclear. Our study showed that both IL-33 and ST-2 expression levels were significantly elevated in H. pylori-infected cells. Confocal microscopy showed that ST-2 mobilized into the membrane lipid rafts during infection. Depletion of membrane cholesterol dampened H. pylori-induced IL-33 and IL-8 production. Furthermore, in vivo studies revealed IL-33/ST-2 upregulation, and severe leukocyte infiltration was observed in gastric tissues infected with H. pylori. Together, these results demonstrate that ST-2 recruitment into the lipid rafts serves as a platform for IL-33-dependent H. pylori infection, which aggravates inflammation in the stomach.
format Online
Article
Text
id pubmed-6830106
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-68301062019-11-20 Helicobacter pylori Induces IL-33 Production and Recruits ST-2 to Lipid Rafts to Exacerbate Inflammation Kuo, Chia-Jung Chen, Chun-Ya Lo, Horng-Ren Feng, Chun-Lung Wu, Hui-Yu Huang, Mei-Zi Liao, Tung-Nan Chen, Yu-An Lai, Chih-Ho Cells Article Helicobacter pylori colonizes human gastric epithelial cells and contributes to the development of several gastrointestinal disorders. Interleukin (IL)-33 is involved in various immune responses, with reported proinflammatory and anti-inflammatory effects, which may be associated with colitis and colitis-associated cancer. IL-33 induces the inflammatory cascade through its receptor, suppression of tumorigenicity-2 (ST-2). Binding of IL-33 to membrane-bound ST-2 (mST-2) recruits the IL-1 receptor accessory protein (IL-1RAcP) and activates intracellular signaling pathways. However, whether IL-33/ST-2 is triggered by H. pylori infection and whether this interaction occurs in lipid rafts remain unclear. Our study showed that both IL-33 and ST-2 expression levels were significantly elevated in H. pylori-infected cells. Confocal microscopy showed that ST-2 mobilized into the membrane lipid rafts during infection. Depletion of membrane cholesterol dampened H. pylori-induced IL-33 and IL-8 production. Furthermore, in vivo studies revealed IL-33/ST-2 upregulation, and severe leukocyte infiltration was observed in gastric tissues infected with H. pylori. Together, these results demonstrate that ST-2 recruitment into the lipid rafts serves as a platform for IL-33-dependent H. pylori infection, which aggravates inflammation in the stomach. MDPI 2019-10-21 /pmc/articles/PMC6830106/ /pubmed/31640262 http://dx.doi.org/10.3390/cells8101290 Text en © 2019 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
Kuo, Chia-Jung
Chen, Chun-Ya
Lo, Horng-Ren
Feng, Chun-Lung
Wu, Hui-Yu
Huang, Mei-Zi
Liao, Tung-Nan
Chen, Yu-An
Lai, Chih-Ho
Helicobacter pylori Induces IL-33 Production and Recruits ST-2 to Lipid Rafts to Exacerbate Inflammation
title Helicobacter pylori Induces IL-33 Production and Recruits ST-2 to Lipid Rafts to Exacerbate Inflammation
title_full Helicobacter pylori Induces IL-33 Production and Recruits ST-2 to Lipid Rafts to Exacerbate Inflammation
title_fullStr Helicobacter pylori Induces IL-33 Production and Recruits ST-2 to Lipid Rafts to Exacerbate Inflammation
title_full_unstemmed Helicobacter pylori Induces IL-33 Production and Recruits ST-2 to Lipid Rafts to Exacerbate Inflammation
title_short Helicobacter pylori Induces IL-33 Production and Recruits ST-2 to Lipid Rafts to Exacerbate Inflammation
title_sort helicobacter pylori induces il-33 production and recruits st-2 to lipid rafts to exacerbate inflammation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6830106/
https://www.ncbi.nlm.nih.gov/pubmed/31640262
http://dx.doi.org/10.3390/cells8101290
work_keys_str_mv AT kuochiajung helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation
AT chenchunya helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation
AT lohorngren helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation
AT fengchunlung helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation
AT wuhuiyu helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation
AT huangmeizi helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation
AT liaotungnan helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation
AT chenyuan helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation
AT laichihho helicobacterpyloriinducesil33productionandrecruitsst2tolipidraftstoexacerbateinflammation