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A knockin mouse model for human ATP4a(R703C) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies

By whole exome sequencing, we recently identified a missense mutation (p.R703C) in the human ATP4a gene, which encodes the proton pump responsible for gastric acidification. This mutation causes an aggressive familial type I gastric neuroendocrine tumor in homozygous individuals. Affected individual...

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Autores principales: Calvete, Oriol, Varro, Andrea, Pritchard, D. Mark, Barroso, Alicia, Oteo, Marta, Morcillo, Miguel Ángel, Vargiu, Pierfrancesco, Dodd, Steven, Garcia, Miriam, Reyes, José, Ortega, Sagrario, Benitez, Javier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5047686/
https://www.ncbi.nlm.nih.gov/pubmed/27491072
http://dx.doi.org/10.1242/dmm.025890
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author Calvete, Oriol
Varro, Andrea
Pritchard, D. Mark
Barroso, Alicia
Oteo, Marta
Morcillo, Miguel Ángel
Vargiu, Pierfrancesco
Dodd, Steven
Garcia, Miriam
Reyes, José
Ortega, Sagrario
Benitez, Javier
author_facet Calvete, Oriol
Varro, Andrea
Pritchard, D. Mark
Barroso, Alicia
Oteo, Marta
Morcillo, Miguel Ángel
Vargiu, Pierfrancesco
Dodd, Steven
Garcia, Miriam
Reyes, José
Ortega, Sagrario
Benitez, Javier
author_sort Calvete, Oriol
collection PubMed
description By whole exome sequencing, we recently identified a missense mutation (p.R703C) in the human ATP4a gene, which encodes the proton pump responsible for gastric acidification. This mutation causes an aggressive familial type I gastric neuroendocrine tumor in homozygous individuals. Affected individuals show an early onset of the disease, characterized by gastric hypoacidity, hypergastrinemia, iron-deficiency anemia, gastric intestinal metaplasia and, in one case, an associated gastric adenocarcinoma. Total gastrectomy was performed as the definitive treatment in all affected individuals. We now describe the generation and characterization of a knockin mouse model for the ATP4a(R703C) mutation to better understand the tumorigenesis process. Homozygous mice recapitulated most of the phenotypical alterations that were observed in human individuals, strongly suggesting that this mutation is the primary alteration responsible for disease development. Homozygous mice developed premalignant condition with severe hyperplasia, dysplasia and glandular metaplasia in the stomach. Interestingly, gastric acidification in homozygous mice, induced by treatment with 3% HCl acid in the drinking water, prevented (if treated from birth) or partially reverted (if treated during adulthood) the development of glandular metaplasia and dysplasia in the stomach and partially rescued the abnormal biochemical parameters. We therefore suggest that, in this model, achlorhydria contributes to tumorigenesis to a greater extent than hypergastrinemia. Furthermore, our mouse model represents a unique and novel tool for studying the pathologies associated with disturbances in gastric acid secretion.
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spelling pubmed-50476862016-10-03 A knockin mouse model for human ATP4a(R703C) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies Calvete, Oriol Varro, Andrea Pritchard, D. Mark Barroso, Alicia Oteo, Marta Morcillo, Miguel Ángel Vargiu, Pierfrancesco Dodd, Steven Garcia, Miriam Reyes, José Ortega, Sagrario Benitez, Javier Dis Model Mech Research Article By whole exome sequencing, we recently identified a missense mutation (p.R703C) in the human ATP4a gene, which encodes the proton pump responsible for gastric acidification. This mutation causes an aggressive familial type I gastric neuroendocrine tumor in homozygous individuals. Affected individuals show an early onset of the disease, characterized by gastric hypoacidity, hypergastrinemia, iron-deficiency anemia, gastric intestinal metaplasia and, in one case, an associated gastric adenocarcinoma. Total gastrectomy was performed as the definitive treatment in all affected individuals. We now describe the generation and characterization of a knockin mouse model for the ATP4a(R703C) mutation to better understand the tumorigenesis process. Homozygous mice recapitulated most of the phenotypical alterations that were observed in human individuals, strongly suggesting that this mutation is the primary alteration responsible for disease development. Homozygous mice developed premalignant condition with severe hyperplasia, dysplasia and glandular metaplasia in the stomach. Interestingly, gastric acidification in homozygous mice, induced by treatment with 3% HCl acid in the drinking water, prevented (if treated from birth) or partially reverted (if treated during adulthood) the development of glandular metaplasia and dysplasia in the stomach and partially rescued the abnormal biochemical parameters. We therefore suggest that, in this model, achlorhydria contributes to tumorigenesis to a greater extent than hypergastrinemia. Furthermore, our mouse model represents a unique and novel tool for studying the pathologies associated with disturbances in gastric acid secretion. The Company of Biologists Ltd 2016-09-01 /pmc/articles/PMC5047686/ /pubmed/27491072 http://dx.doi.org/10.1242/dmm.025890 Text en © 2016. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Calvete, Oriol
Varro, Andrea
Pritchard, D. Mark
Barroso, Alicia
Oteo, Marta
Morcillo, Miguel Ángel
Vargiu, Pierfrancesco
Dodd, Steven
Garcia, Miriam
Reyes, José
Ortega, Sagrario
Benitez, Javier
A knockin mouse model for human ATP4a(R703C) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies
title A knockin mouse model for human ATP4a(R703C) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies
title_full A knockin mouse model for human ATP4a(R703C) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies
title_fullStr A knockin mouse model for human ATP4a(R703C) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies
title_full_unstemmed A knockin mouse model for human ATP4a(R703C) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies
title_short A knockin mouse model for human ATP4a(R703C) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies
title_sort knockin mouse model for human atp4a(r703c) mutation identified in familial gastric neuroendocrine tumors recapitulates the premalignant condition of the human disease and suggests new therapeutic strategies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5047686/
https://www.ncbi.nlm.nih.gov/pubmed/27491072
http://dx.doi.org/10.1242/dmm.025890
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