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Spermine Oxidase Mediates Helicobacter pylori-induced Gastric Inflammation, DNA Damage, and Carcinogenic Signaling

Helicobacter pylori infection is the main risk factor for development of gastric cancer, the third leading cause of cancer death worldwide. H. pylori colonizes the human gastric mucosa and persists for decades. The inflammatory response is ineffective in clearing the infection, leading to disease pr...

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Autores principales: Sierra, Johanna C., Piazuelo, M. Blanca, Luis, Paula B., Barry, Daniel P., Allaman, Margaret M., Asim, Mohammad, Sebrell, Thomas A., Finley, Jordan L., Rose, Kristie L., Hill, Salisha, Holshouser, Steven L., Casero, Robert A., Cleveland, John L., Woster, Patrick M., Schey, Kevin L., Bimczok, Diane, Schneider, Claus, Gobert, Alain P., Wilson, Keith T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7260102/
https://www.ncbi.nlm.nih.gov/pubmed/32350444
http://dx.doi.org/10.1038/s41388-020-1304-6
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author Sierra, Johanna C.
Piazuelo, M. Blanca
Luis, Paula B.
Barry, Daniel P.
Allaman, Margaret M.
Asim, Mohammad
Sebrell, Thomas A.
Finley, Jordan L.
Rose, Kristie L.
Hill, Salisha
Holshouser, Steven L.
Casero, Robert A.
Cleveland, John L.
Woster, Patrick M.
Schey, Kevin L.
Bimczok, Diane
Schneider, Claus
Gobert, Alain P.
Wilson, Keith T.
author_facet Sierra, Johanna C.
Piazuelo, M. Blanca
Luis, Paula B.
Barry, Daniel P.
Allaman, Margaret M.
Asim, Mohammad
Sebrell, Thomas A.
Finley, Jordan L.
Rose, Kristie L.
Hill, Salisha
Holshouser, Steven L.
Casero, Robert A.
Cleveland, John L.
Woster, Patrick M.
Schey, Kevin L.
Bimczok, Diane
Schneider, Claus
Gobert, Alain P.
Wilson, Keith T.
author_sort Sierra, Johanna C.
collection PubMed
description Helicobacter pylori infection is the main risk factor for development of gastric cancer, the third leading cause of cancer death worldwide. H. pylori colonizes the human gastric mucosa and persists for decades. The inflammatory response is ineffective in clearing the infection, leading to disease progression that may result in gastric adenocarcinoma. We have shown that polyamines are regulators of the host response to H. pylori, and that spermine oxidase (SMOX), which metabolizes the polyamine spermine into spermidine plus H(2)O(2), is associated with increased human gastric cancer risk. We now used a molecular approach to directly address the role of SMOX, and demonstrate that Smox-deficient mice exhibit significant reductions of gastric spermidine levels and H. pylori-induced inflammation. Proteomic analysis revealed that cancer was the most significantly altered functional pathway in Smox(−/−) gastric organoids. Moreover, there was also less DNA damage and β-catenin activation in H. pylori-infected Smox(−/−) mice or gastric organoids, compared to infected wild-type animals or gastroids. The link between SMOX and β-catenin activation was confirmed in human gastric organoids that were treated with a novel SMOX inhibitor. These findings indicate that SMOX promotes H. pylori-induced carcinogenesis by causing inflammation, DNA damage, and activation of β-catenin signaling.
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spelling pubmed-72601022020-10-29 Spermine Oxidase Mediates Helicobacter pylori-induced Gastric Inflammation, DNA Damage, and Carcinogenic Signaling Sierra, Johanna C. Piazuelo, M. Blanca Luis, Paula B. Barry, Daniel P. Allaman, Margaret M. Asim, Mohammad Sebrell, Thomas A. Finley, Jordan L. Rose, Kristie L. Hill, Salisha Holshouser, Steven L. Casero, Robert A. Cleveland, John L. Woster, Patrick M. Schey, Kevin L. Bimczok, Diane Schneider, Claus Gobert, Alain P. Wilson, Keith T. Oncogene Article Helicobacter pylori infection is the main risk factor for development of gastric cancer, the third leading cause of cancer death worldwide. H. pylori colonizes the human gastric mucosa and persists for decades. The inflammatory response is ineffective in clearing the infection, leading to disease progression that may result in gastric adenocarcinoma. We have shown that polyamines are regulators of the host response to H. pylori, and that spermine oxidase (SMOX), which metabolizes the polyamine spermine into spermidine plus H(2)O(2), is associated with increased human gastric cancer risk. We now used a molecular approach to directly address the role of SMOX, and demonstrate that Smox-deficient mice exhibit significant reductions of gastric spermidine levels and H. pylori-induced inflammation. Proteomic analysis revealed that cancer was the most significantly altered functional pathway in Smox(−/−) gastric organoids. Moreover, there was also less DNA damage and β-catenin activation in H. pylori-infected Smox(−/−) mice or gastric organoids, compared to infected wild-type animals or gastroids. The link between SMOX and β-catenin activation was confirmed in human gastric organoids that were treated with a novel SMOX inhibitor. These findings indicate that SMOX promotes H. pylori-induced carcinogenesis by causing inflammation, DNA damage, and activation of β-catenin signaling. 2020-04-29 2020-05 /pmc/articles/PMC7260102/ /pubmed/32350444 http://dx.doi.org/10.1038/s41388-020-1304-6 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Sierra, Johanna C.
Piazuelo, M. Blanca
Luis, Paula B.
Barry, Daniel P.
Allaman, Margaret M.
Asim, Mohammad
Sebrell, Thomas A.
Finley, Jordan L.
Rose, Kristie L.
Hill, Salisha
Holshouser, Steven L.
Casero, Robert A.
Cleveland, John L.
Woster, Patrick M.
Schey, Kevin L.
Bimczok, Diane
Schneider, Claus
Gobert, Alain P.
Wilson, Keith T.
Spermine Oxidase Mediates Helicobacter pylori-induced Gastric Inflammation, DNA Damage, and Carcinogenic Signaling
title Spermine Oxidase Mediates Helicobacter pylori-induced Gastric Inflammation, DNA Damage, and Carcinogenic Signaling
title_full Spermine Oxidase Mediates Helicobacter pylori-induced Gastric Inflammation, DNA Damage, and Carcinogenic Signaling
title_fullStr Spermine Oxidase Mediates Helicobacter pylori-induced Gastric Inflammation, DNA Damage, and Carcinogenic Signaling
title_full_unstemmed Spermine Oxidase Mediates Helicobacter pylori-induced Gastric Inflammation, DNA Damage, and Carcinogenic Signaling
title_short Spermine Oxidase Mediates Helicobacter pylori-induced Gastric Inflammation, DNA Damage, and Carcinogenic Signaling
title_sort spermine oxidase mediates helicobacter pylori-induced gastric inflammation, dna damage, and carcinogenic signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7260102/
https://www.ncbi.nlm.nih.gov/pubmed/32350444
http://dx.doi.org/10.1038/s41388-020-1304-6
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