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ARMCX3 Mediates Susceptibility to Hepatic Tumorigenesis Promoted by Dietary Lipotoxicity

SIMPLE SUMMARY: An excess fat in the liver enhances the susceptibility to hepatic cancer. We found that Armcx3, a protein only known to date to play a role in neural development, is strongly increased in mouse liver in response to lipid availability and proliferation-inducing insults. In patients, t...

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Autores principales: Mirra, Serena, Gavaldà-Navarro, Aleix, Manso, Yasmina, Higuera, Mónica, Serrat, Román, Salcedo, María Teresa, Burgaya, Ferran, Balibrea, José Maria, Santamaría, Eva, Uriarte, Iker, Berasain, Carmen, Avila, Matias A., Mínguez, Beatriz, Soriano, Eduardo, Villarroya, Francesc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961652/
https://www.ncbi.nlm.nih.gov/pubmed/33807672
http://dx.doi.org/10.3390/cancers13051110
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author Mirra, Serena
Gavaldà-Navarro, Aleix
Manso, Yasmina
Higuera, Mónica
Serrat, Román
Salcedo, María Teresa
Burgaya, Ferran
Balibrea, José Maria
Santamaría, Eva
Uriarte, Iker
Berasain, Carmen
Avila, Matias A.
Mínguez, Beatriz
Soriano, Eduardo
Villarroya, Francesc
author_facet Mirra, Serena
Gavaldà-Navarro, Aleix
Manso, Yasmina
Higuera, Mónica
Serrat, Román
Salcedo, María Teresa
Burgaya, Ferran
Balibrea, José Maria
Santamaría, Eva
Uriarte, Iker
Berasain, Carmen
Avila, Matias A.
Mínguez, Beatriz
Soriano, Eduardo
Villarroya, Francesc
author_sort Mirra, Serena
collection PubMed
description SIMPLE SUMMARY: An excess fat in the liver enhances the susceptibility to hepatic cancer. We found that Armcx3, a protein only known to date to play a role in neural development, is strongly increased in mouse liver in response to lipid availability and proliferation-inducing insults. In patients, the levels of hepatic Armcx3 are also increased in conditions of high exposure of the liver to fat. We wanted to determine the role of Armcx3 in the hepatocarcinogenesis favored by a high-fat diet. We generated mice with genetically driven suppression of Armcx3, and we found that they were protected against experimentally induced hepatic cancer, especially in conditions of a high-fat diet. Armcx3 was also found to promote hepatic cell proliferation through the interaction with Sox9, a known proliferation factor in hepatocellular carcinoma. Armcx3 is identified as a novel factor in meditating propensity to liver cancer in conditions of high hepatic lipid insults. ABSTRACT: ARMCX3 is encoded by a member of the Armcx gene family and is known to be involved in nervous system development and function. We found that ARMCX3 is markedly upregulated in mouse liver in response to high lipid availability, and that hepatic ARMCX3 is upregulated in patients with NAFLD and hepatocellular carcinoma (HCC). Mice were subjected to ARMCX3 invalidation (inducible ARMCX3 knockout) and then exposed to a high-fat diet and diethylnitrosamine-induced hepatocarcinogenesis. The effects of experimental ARMCX3 knockdown or overexpression in HCC cell lines were also analyzed. ARMCX3 invalidation protected mice against high-fat-diet-induced NAFLD and chemically induced hepatocarcinogenesis. ARMCX3 invalidation promoted apoptotic cell death and macrophage infiltration in livers of diethylnitrosamine-treated mice maintained on a high-fat diet. ARMCX3 downregulation reduced the viability, clonality and migration of HCC cell lines, whereas ARMCX3 overexpression caused the reciprocal effects. SOX9 was found to mediate the effects of ARMCX3 in hepatic cells, with the SOX9 interaction required for the effects of ARMCX3 on hepatic cell proliferation. In conclusion, ARMCX3 is identified as a novel molecular actor in liver physiopathology and carcinogenesis. ARMCX3 downregulation appears to protect against hepatocarcinogenesis, especially under conditions of high dietary lipid-mediated hepatic insult.
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spelling pubmed-79616522021-03-17 ARMCX3 Mediates Susceptibility to Hepatic Tumorigenesis Promoted by Dietary Lipotoxicity Mirra, Serena Gavaldà-Navarro, Aleix Manso, Yasmina Higuera, Mónica Serrat, Román Salcedo, María Teresa Burgaya, Ferran Balibrea, José Maria Santamaría, Eva Uriarte, Iker Berasain, Carmen Avila, Matias A. Mínguez, Beatriz Soriano, Eduardo Villarroya, Francesc Cancers (Basel) Article SIMPLE SUMMARY: An excess fat in the liver enhances the susceptibility to hepatic cancer. We found that Armcx3, a protein only known to date to play a role in neural development, is strongly increased in mouse liver in response to lipid availability and proliferation-inducing insults. In patients, the levels of hepatic Armcx3 are also increased in conditions of high exposure of the liver to fat. We wanted to determine the role of Armcx3 in the hepatocarcinogenesis favored by a high-fat diet. We generated mice with genetically driven suppression of Armcx3, and we found that they were protected against experimentally induced hepatic cancer, especially in conditions of a high-fat diet. Armcx3 was also found to promote hepatic cell proliferation through the interaction with Sox9, a known proliferation factor in hepatocellular carcinoma. Armcx3 is identified as a novel factor in meditating propensity to liver cancer in conditions of high hepatic lipid insults. ABSTRACT: ARMCX3 is encoded by a member of the Armcx gene family and is known to be involved in nervous system development and function. We found that ARMCX3 is markedly upregulated in mouse liver in response to high lipid availability, and that hepatic ARMCX3 is upregulated in patients with NAFLD and hepatocellular carcinoma (HCC). Mice were subjected to ARMCX3 invalidation (inducible ARMCX3 knockout) and then exposed to a high-fat diet and diethylnitrosamine-induced hepatocarcinogenesis. The effects of experimental ARMCX3 knockdown or overexpression in HCC cell lines were also analyzed. ARMCX3 invalidation protected mice against high-fat-diet-induced NAFLD and chemically induced hepatocarcinogenesis. ARMCX3 invalidation promoted apoptotic cell death and macrophage infiltration in livers of diethylnitrosamine-treated mice maintained on a high-fat diet. ARMCX3 downregulation reduced the viability, clonality and migration of HCC cell lines, whereas ARMCX3 overexpression caused the reciprocal effects. SOX9 was found to mediate the effects of ARMCX3 in hepatic cells, with the SOX9 interaction required for the effects of ARMCX3 on hepatic cell proliferation. In conclusion, ARMCX3 is identified as a novel molecular actor in liver physiopathology and carcinogenesis. ARMCX3 downregulation appears to protect against hepatocarcinogenesis, especially under conditions of high dietary lipid-mediated hepatic insult. MDPI 2021-03-05 /pmc/articles/PMC7961652/ /pubmed/33807672 http://dx.doi.org/10.3390/cancers13051110 Text en © 2021 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
Mirra, Serena
Gavaldà-Navarro, Aleix
Manso, Yasmina
Higuera, Mónica
Serrat, Román
Salcedo, María Teresa
Burgaya, Ferran
Balibrea, José Maria
Santamaría, Eva
Uriarte, Iker
Berasain, Carmen
Avila, Matias A.
Mínguez, Beatriz
Soriano, Eduardo
Villarroya, Francesc
ARMCX3 Mediates Susceptibility to Hepatic Tumorigenesis Promoted by Dietary Lipotoxicity
title ARMCX3 Mediates Susceptibility to Hepatic Tumorigenesis Promoted by Dietary Lipotoxicity
title_full ARMCX3 Mediates Susceptibility to Hepatic Tumorigenesis Promoted by Dietary Lipotoxicity
title_fullStr ARMCX3 Mediates Susceptibility to Hepatic Tumorigenesis Promoted by Dietary Lipotoxicity
title_full_unstemmed ARMCX3 Mediates Susceptibility to Hepatic Tumorigenesis Promoted by Dietary Lipotoxicity
title_short ARMCX3 Mediates Susceptibility to Hepatic Tumorigenesis Promoted by Dietary Lipotoxicity
title_sort armcx3 mediates susceptibility to hepatic tumorigenesis promoted by dietary lipotoxicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961652/
https://www.ncbi.nlm.nih.gov/pubmed/33807672
http://dx.doi.org/10.3390/cancers13051110
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