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Single-cell Profiling Uncovers a Muc4-Expressing Metaplastic Gastric Cell Type Sustained by Helicobacter pylori-driven Inflammation

Mechanisms for Helicobacter pylori (Hp)-driven stomach cancer are not fully understood. In a transgenic mouse model of gastric preneoplasia, concomitant Hp infection and induction of constitutively active KRAS (Hp+KRAS+) alters metaplasia phenotypes and elicits greater inflammation than either pertu...

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Autores principales: O'Brien, Valerie P., Kang, Yuqi, Shenoy, Meera K., Finak, Greg, Young, William C., Dubrulle, Julien, Koch, Lisa, Rodriguez Martinez, Armando E., Williams, Jeffery, Donato, Elizabeth, Batra, Surinder K., Yeung, Cecilia C.S., Grady, William M., Koch, Meghan A., Gottardo, Raphael, Salama, Nina R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10478791/
https://www.ncbi.nlm.nih.gov/pubmed/37674528
http://dx.doi.org/10.1158/2767-9764.CRC-23-0142
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author O'Brien, Valerie P.
Kang, Yuqi
Shenoy, Meera K.
Finak, Greg
Young, William C.
Dubrulle, Julien
Koch, Lisa
Rodriguez Martinez, Armando E.
Williams, Jeffery
Donato, Elizabeth
Batra, Surinder K.
Yeung, Cecilia C.S.
Grady, William M.
Koch, Meghan A.
Gottardo, Raphael
Salama, Nina R.
author_facet O'Brien, Valerie P.
Kang, Yuqi
Shenoy, Meera K.
Finak, Greg
Young, William C.
Dubrulle, Julien
Koch, Lisa
Rodriguez Martinez, Armando E.
Williams, Jeffery
Donato, Elizabeth
Batra, Surinder K.
Yeung, Cecilia C.S.
Grady, William M.
Koch, Meghan A.
Gottardo, Raphael
Salama, Nina R.
author_sort O'Brien, Valerie P.
collection PubMed
description Mechanisms for Helicobacter pylori (Hp)-driven stomach cancer are not fully understood. In a transgenic mouse model of gastric preneoplasia, concomitant Hp infection and induction of constitutively active KRAS (Hp+KRAS+) alters metaplasia phenotypes and elicits greater inflammation than either perturbation alone. Gastric single-cell RNA sequencing showed that Hp+KRAS+ mice had a large population of metaplastic pit cells that expressed the intestinal mucin Muc4 and the growth factor amphiregulin. Flow cytometry and IHC-based immune profiling revealed that metaplastic pit cells were associated with macrophage and T-cell inflammation. Accordingly, expansion of metaplastic pit cells was prevented by gastric immunosuppression and reversed by antibiotic eradication of Hp. Finally, MUC4 expression was significantly associated with proliferation in human gastric cancer samples. These studies identify an Hp-associated metaplastic pit cell lineage, also found in human gastric cancer tissues, whose expansion is driven by Hp-dependent inflammation. SIGNIFICANCE: Using a mouse model, we have delineated metaplastic pit cells as a precancerous cell type whose expansion requires Hp-driven inflammation. In humans, metaplastic pit cells show enhanced proliferation as well as enrichment in precancer and early cancer tissues, highlighting an early step in the gastric metaplasia to cancer cascade.
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spelling pubmed-104787912023-09-06 Single-cell Profiling Uncovers a Muc4-Expressing Metaplastic Gastric Cell Type Sustained by Helicobacter pylori-driven Inflammation O'Brien, Valerie P. Kang, Yuqi Shenoy, Meera K. Finak, Greg Young, William C. Dubrulle, Julien Koch, Lisa Rodriguez Martinez, Armando E. Williams, Jeffery Donato, Elizabeth Batra, Surinder K. Yeung, Cecilia C.S. Grady, William M. Koch, Meghan A. Gottardo, Raphael Salama, Nina R. Cancer Res Commun Research Article Mechanisms for Helicobacter pylori (Hp)-driven stomach cancer are not fully understood. In a transgenic mouse model of gastric preneoplasia, concomitant Hp infection and induction of constitutively active KRAS (Hp+KRAS+) alters metaplasia phenotypes and elicits greater inflammation than either perturbation alone. Gastric single-cell RNA sequencing showed that Hp+KRAS+ mice had a large population of metaplastic pit cells that expressed the intestinal mucin Muc4 and the growth factor amphiregulin. Flow cytometry and IHC-based immune profiling revealed that metaplastic pit cells were associated with macrophage and T-cell inflammation. Accordingly, expansion of metaplastic pit cells was prevented by gastric immunosuppression and reversed by antibiotic eradication of Hp. Finally, MUC4 expression was significantly associated with proliferation in human gastric cancer samples. These studies identify an Hp-associated metaplastic pit cell lineage, also found in human gastric cancer tissues, whose expansion is driven by Hp-dependent inflammation. SIGNIFICANCE: Using a mouse model, we have delineated metaplastic pit cells as a precancerous cell type whose expansion requires Hp-driven inflammation. In humans, metaplastic pit cells show enhanced proliferation as well as enrichment in precancer and early cancer tissues, highlighting an early step in the gastric metaplasia to cancer cascade. American Association for Cancer Research 2023-09-05 /pmc/articles/PMC10478791/ /pubmed/37674528 http://dx.doi.org/10.1158/2767-9764.CRC-23-0142 Text en © 2023 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by/4.0/This open access article is distributed under the Creative Commons Attribution 4.0 International (CC BY 4.0) license.
spellingShingle Research Article
O'Brien, Valerie P.
Kang, Yuqi
Shenoy, Meera K.
Finak, Greg
Young, William C.
Dubrulle, Julien
Koch, Lisa
Rodriguez Martinez, Armando E.
Williams, Jeffery
Donato, Elizabeth
Batra, Surinder K.
Yeung, Cecilia C.S.
Grady, William M.
Koch, Meghan A.
Gottardo, Raphael
Salama, Nina R.
Single-cell Profiling Uncovers a Muc4-Expressing Metaplastic Gastric Cell Type Sustained by Helicobacter pylori-driven Inflammation
title Single-cell Profiling Uncovers a Muc4-Expressing Metaplastic Gastric Cell Type Sustained by Helicobacter pylori-driven Inflammation
title_full Single-cell Profiling Uncovers a Muc4-Expressing Metaplastic Gastric Cell Type Sustained by Helicobacter pylori-driven Inflammation
title_fullStr Single-cell Profiling Uncovers a Muc4-Expressing Metaplastic Gastric Cell Type Sustained by Helicobacter pylori-driven Inflammation
title_full_unstemmed Single-cell Profiling Uncovers a Muc4-Expressing Metaplastic Gastric Cell Type Sustained by Helicobacter pylori-driven Inflammation
title_short Single-cell Profiling Uncovers a Muc4-Expressing Metaplastic Gastric Cell Type Sustained by Helicobacter pylori-driven Inflammation
title_sort single-cell profiling uncovers a muc4-expressing metaplastic gastric cell type sustained by helicobacter pylori-driven inflammation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10478791/
https://www.ncbi.nlm.nih.gov/pubmed/37674528
http://dx.doi.org/10.1158/2767-9764.CRC-23-0142
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