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Lack of Matrilin-2 Favors Liver Tumor Development via Erk1/2 and GSK-3β Pathways In Vivo

Matrilin-2 (Matn2) is a multidomain adaptor protein which plays a role in the assembly of extracellular matrix (ECM). It is produced by oval cells during stem cell-driven liver regeneration. In our study, the impact of Matn2 on hepatocarcinogenesis was investigated in Matn2(-/-) mice comparing them...

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Autores principales: Fullár, Alexandra, Baghy, Kornélia, Deák, Ferenc, Péterfia, Bálint, Zsák, Yvonne, Tátrai, Péter, Schaff, Zsuzsa, Dudás, József, Kiss, Ibolya, Kovalszky, Ilona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3972106/
https://www.ncbi.nlm.nih.gov/pubmed/24691449
http://dx.doi.org/10.1371/journal.pone.0093469
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author Fullár, Alexandra
Baghy, Kornélia
Deák, Ferenc
Péterfia, Bálint
Zsák, Yvonne
Tátrai, Péter
Schaff, Zsuzsa
Dudás, József
Kiss, Ibolya
Kovalszky, Ilona
author_facet Fullár, Alexandra
Baghy, Kornélia
Deák, Ferenc
Péterfia, Bálint
Zsák, Yvonne
Tátrai, Péter
Schaff, Zsuzsa
Dudás, József
Kiss, Ibolya
Kovalszky, Ilona
author_sort Fullár, Alexandra
collection PubMed
description Matrilin-2 (Matn2) is a multidomain adaptor protein which plays a role in the assembly of extracellular matrix (ECM). It is produced by oval cells during stem cell-driven liver regeneration. In our study, the impact of Matn2 on hepatocarcinogenesis was investigated in Matn2(-/-) mice comparing them with wild-type (WT) mice in a diethylnitrosamine (DEN) model. The liver tissue was analyzed macroscopically, histologically and immunohistochemically, at protein level by Proteome Profiler Arrays and Western blot analysis. Matn2(-/-) mice exhibited higher susceptibility to hepatocarcinogenesis compared to wild-type mice. In the liver of Matn2(-/-) mice, spontaneous microscopic tumor foci were detected without DEN treatment. After 15 μg/g body weight DEN treatment, the liver of Matn2(-/-) mice contained macroscopic tumors of both larger number and size than the WT liver. In contrast with the WT liver, spontaneous phosphorylation of EGFR, Erk1/2 GSK-3α/β and retinoblastoma protein (p-Rb), decrease in p21/CIP1 level, and increase in β-Catenin protein expression were detected in Matn2(-/-) livers. Focal Ki-67 positivity of these samples provided additional support to our presumption that the lack of Matn2 drives the liver into a pro-proliferatory state, making it prone to tumor development. This enhanced proliferative capacity was further increased in the tumor nodules of DEN-treated Matn2(-/-) livers. Our study suggests that Matn2 functions as a tumor suppressor in hepatocarcinogenesis, and in this process activation of EGFR together with that of Erk1/2, as well as inactivation of GSK-3β, play strategic roles.
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spelling pubmed-39721062014-04-04 Lack of Matrilin-2 Favors Liver Tumor Development via Erk1/2 and GSK-3β Pathways In Vivo Fullár, Alexandra Baghy, Kornélia Deák, Ferenc Péterfia, Bálint Zsák, Yvonne Tátrai, Péter Schaff, Zsuzsa Dudás, József Kiss, Ibolya Kovalszky, Ilona PLoS One Research Article Matrilin-2 (Matn2) is a multidomain adaptor protein which plays a role in the assembly of extracellular matrix (ECM). It is produced by oval cells during stem cell-driven liver regeneration. In our study, the impact of Matn2 on hepatocarcinogenesis was investigated in Matn2(-/-) mice comparing them with wild-type (WT) mice in a diethylnitrosamine (DEN) model. The liver tissue was analyzed macroscopically, histologically and immunohistochemically, at protein level by Proteome Profiler Arrays and Western blot analysis. Matn2(-/-) mice exhibited higher susceptibility to hepatocarcinogenesis compared to wild-type mice. In the liver of Matn2(-/-) mice, spontaneous microscopic tumor foci were detected without DEN treatment. After 15 μg/g body weight DEN treatment, the liver of Matn2(-/-) mice contained macroscopic tumors of both larger number and size than the WT liver. In contrast with the WT liver, spontaneous phosphorylation of EGFR, Erk1/2 GSK-3α/β and retinoblastoma protein (p-Rb), decrease in p21/CIP1 level, and increase in β-Catenin protein expression were detected in Matn2(-/-) livers. Focal Ki-67 positivity of these samples provided additional support to our presumption that the lack of Matn2 drives the liver into a pro-proliferatory state, making it prone to tumor development. This enhanced proliferative capacity was further increased in the tumor nodules of DEN-treated Matn2(-/-) livers. Our study suggests that Matn2 functions as a tumor suppressor in hepatocarcinogenesis, and in this process activation of EGFR together with that of Erk1/2, as well as inactivation of GSK-3β, play strategic roles. Public Library of Science 2014-04-01 /pmc/articles/PMC3972106/ /pubmed/24691449 http://dx.doi.org/10.1371/journal.pone.0093469 Text en © 2014 Fullár et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Fullár, Alexandra
Baghy, Kornélia
Deák, Ferenc
Péterfia, Bálint
Zsák, Yvonne
Tátrai, Péter
Schaff, Zsuzsa
Dudás, József
Kiss, Ibolya
Kovalszky, Ilona
Lack of Matrilin-2 Favors Liver Tumor Development via Erk1/2 and GSK-3β Pathways In Vivo
title Lack of Matrilin-2 Favors Liver Tumor Development via Erk1/2 and GSK-3β Pathways In Vivo
title_full Lack of Matrilin-2 Favors Liver Tumor Development via Erk1/2 and GSK-3β Pathways In Vivo
title_fullStr Lack of Matrilin-2 Favors Liver Tumor Development via Erk1/2 and GSK-3β Pathways In Vivo
title_full_unstemmed Lack of Matrilin-2 Favors Liver Tumor Development via Erk1/2 and GSK-3β Pathways In Vivo
title_short Lack of Matrilin-2 Favors Liver Tumor Development via Erk1/2 and GSK-3β Pathways In Vivo
title_sort lack of matrilin-2 favors liver tumor development via erk1/2 and gsk-3β pathways in vivo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3972106/
https://www.ncbi.nlm.nih.gov/pubmed/24691449
http://dx.doi.org/10.1371/journal.pone.0093469
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