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PTPN13 induces cell junction stabilization and inhibits mammary tumor invasiveness

Clinical data suggest that the protein tyrosine phosphatase PTPN13 exerts an anti-oncogenic effect. Its exact role in tumorigenesis remains, however, unclear due to its negative impact on FAS receptor-induced apoptosis. Methods: We crossed transgenic mice deleted for PTPN13 phosphatase activity with...

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Autores principales: Hamyeh, Mohamed, Bernex, Florence, Larive, Romain M., Naldi, Aurélien, Urbach, Serge, Simony-Lafontaine, Joelle, Puech, Carole, Bakhache, William, Solassol, Jérome, Coopman, Peter J., Hendriks, Wiljan J.A.J, Freiss, Gilles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6956795/
https://www.ncbi.nlm.nih.gov/pubmed/31938048
http://dx.doi.org/10.7150/thno.38537
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author Hamyeh, Mohamed
Bernex, Florence
Larive, Romain M.
Naldi, Aurélien
Urbach, Serge
Simony-Lafontaine, Joelle
Puech, Carole
Bakhache, William
Solassol, Jérome
Coopman, Peter J.
Hendriks, Wiljan J.A.J
Freiss, Gilles
author_facet Hamyeh, Mohamed
Bernex, Florence
Larive, Romain M.
Naldi, Aurélien
Urbach, Serge
Simony-Lafontaine, Joelle
Puech, Carole
Bakhache, William
Solassol, Jérome
Coopman, Peter J.
Hendriks, Wiljan J.A.J
Freiss, Gilles
author_sort Hamyeh, Mohamed
collection PubMed
description Clinical data suggest that the protein tyrosine phosphatase PTPN13 exerts an anti-oncogenic effect. Its exact role in tumorigenesis remains, however, unclear due to its negative impact on FAS receptor-induced apoptosis. Methods: We crossed transgenic mice deleted for PTPN13 phosphatase activity with mice that overexpress human HER2 to assess the exact role of PTPN13 in tumor development and aggressiveness. To determine the molecular mechanism underlying the PTPN13 tumor suppressor activity we developed isogenic clones of the aggressive human breast cancer cell line MDA-MB-231 overexpressing either wild type or a catalytically-inactive mutant PTPN13 and subjected these to phosphoproteomic and gene ontology analyses. We investigated the PTPN13 consequences on cell aggressiveness using wound healing and Boyden chamber assays, on intercellular adhesion using videomicroscopy, cell aggregation assay and immunofluorescence. Results: The development, growth and invasiveness of breast tumors were strongly increased by deletion of the PTPN13 phosphatase activity in transgenic mice. We observed that PTPN13 phosphatase activity is required to inhibit cell motility and invasion in the MDA-MB-231 cell line overexpressing PTPN13. In vivo, the negative PTPN13 effect on tumor invasiveness was associated with a mesenchymal-to-epithelial transition phenotype in athymic mice xenografted with PTPN13-overexpressing MDA-MB-231 cells, as well as in HER2-overexpressing mice with wild type PTPN13, compared to HER2-overexpressing mice that lack PTPN13 phosphatase activity. Phosphoproteomic and gene ontology analyses indicated a role of PTPN13 in the regulation of intercellular junction-related proteins. Finally, protein localization studies in MDA-MB-231 cells and HER2-overexpressing mice tumors confirmed that PTPN13 stabilizes intercellular adhesion and promotes desmosome formation. Conclusions: These data provide the first evidence for the negative role of PTPN13 in breast tumor invasiveness and highlight its involvement in cell junction stabilization.
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spelling pubmed-69567952020-01-14 PTPN13 induces cell junction stabilization and inhibits mammary tumor invasiveness Hamyeh, Mohamed Bernex, Florence Larive, Romain M. Naldi, Aurélien Urbach, Serge Simony-Lafontaine, Joelle Puech, Carole Bakhache, William Solassol, Jérome Coopman, Peter J. Hendriks, Wiljan J.A.J Freiss, Gilles Theranostics Research Paper Clinical data suggest that the protein tyrosine phosphatase PTPN13 exerts an anti-oncogenic effect. Its exact role in tumorigenesis remains, however, unclear due to its negative impact on FAS receptor-induced apoptosis. Methods: We crossed transgenic mice deleted for PTPN13 phosphatase activity with mice that overexpress human HER2 to assess the exact role of PTPN13 in tumor development and aggressiveness. To determine the molecular mechanism underlying the PTPN13 tumor suppressor activity we developed isogenic clones of the aggressive human breast cancer cell line MDA-MB-231 overexpressing either wild type or a catalytically-inactive mutant PTPN13 and subjected these to phosphoproteomic and gene ontology analyses. We investigated the PTPN13 consequences on cell aggressiveness using wound healing and Boyden chamber assays, on intercellular adhesion using videomicroscopy, cell aggregation assay and immunofluorescence. Results: The development, growth and invasiveness of breast tumors were strongly increased by deletion of the PTPN13 phosphatase activity in transgenic mice. We observed that PTPN13 phosphatase activity is required to inhibit cell motility and invasion in the MDA-MB-231 cell line overexpressing PTPN13. In vivo, the negative PTPN13 effect on tumor invasiveness was associated with a mesenchymal-to-epithelial transition phenotype in athymic mice xenografted with PTPN13-overexpressing MDA-MB-231 cells, as well as in HER2-overexpressing mice with wild type PTPN13, compared to HER2-overexpressing mice that lack PTPN13 phosphatase activity. Phosphoproteomic and gene ontology analyses indicated a role of PTPN13 in the regulation of intercellular junction-related proteins. Finally, protein localization studies in MDA-MB-231 cells and HER2-overexpressing mice tumors confirmed that PTPN13 stabilizes intercellular adhesion and promotes desmosome formation. Conclusions: These data provide the first evidence for the negative role of PTPN13 in breast tumor invasiveness and highlight its involvement in cell junction stabilization. Ivyspring International Publisher 2020-01-01 /pmc/articles/PMC6956795/ /pubmed/31938048 http://dx.doi.org/10.7150/thno.38537 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Hamyeh, Mohamed
Bernex, Florence
Larive, Romain M.
Naldi, Aurélien
Urbach, Serge
Simony-Lafontaine, Joelle
Puech, Carole
Bakhache, William
Solassol, Jérome
Coopman, Peter J.
Hendriks, Wiljan J.A.J
Freiss, Gilles
PTPN13 induces cell junction stabilization and inhibits mammary tumor invasiveness
title PTPN13 induces cell junction stabilization and inhibits mammary tumor invasiveness
title_full PTPN13 induces cell junction stabilization and inhibits mammary tumor invasiveness
title_fullStr PTPN13 induces cell junction stabilization and inhibits mammary tumor invasiveness
title_full_unstemmed PTPN13 induces cell junction stabilization and inhibits mammary tumor invasiveness
title_short PTPN13 induces cell junction stabilization and inhibits mammary tumor invasiveness
title_sort ptpn13 induces cell junction stabilization and inhibits mammary tumor invasiveness
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6956795/
https://www.ncbi.nlm.nih.gov/pubmed/31938048
http://dx.doi.org/10.7150/thno.38537
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