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Tumour Cells Expressing Single VEGF Isoforms Display Distinct Growth, Survival and Migration Characteristics

Vascular endothelial growth factor-A (VEGF) is produced by most cancer cells as multiple isoforms, which display distinct biological activities. VEGF plays an undisputed role in tumour growth, vascularisation and metastasis; nevertheless the functions of individual isoforms in these processes remain...

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Autores principales: Kanthou, Chryso, Dachs, Gabi U., Lefley, Diane V., Steele, Andrew J., Coralli-Foxon, Claudia, Harris, Sheila, Greco, Olga, Dos Santos, Sofia A., Reyes-Aldasoro, Constantino C., English, William R., Tozer, Gillian M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4131915/
https://www.ncbi.nlm.nih.gov/pubmed/25119572
http://dx.doi.org/10.1371/journal.pone.0104015
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author Kanthou, Chryso
Dachs, Gabi U.
Lefley, Diane V.
Steele, Andrew J.
Coralli-Foxon, Claudia
Harris, Sheila
Greco, Olga
Dos Santos, Sofia A.
Reyes-Aldasoro, Constantino C.
English, William R.
Tozer, Gillian M.
author_facet Kanthou, Chryso
Dachs, Gabi U.
Lefley, Diane V.
Steele, Andrew J.
Coralli-Foxon, Claudia
Harris, Sheila
Greco, Olga
Dos Santos, Sofia A.
Reyes-Aldasoro, Constantino C.
English, William R.
Tozer, Gillian M.
author_sort Kanthou, Chryso
collection PubMed
description Vascular endothelial growth factor-A (VEGF) is produced by most cancer cells as multiple isoforms, which display distinct biological activities. VEGF plays an undisputed role in tumour growth, vascularisation and metastasis; nevertheless the functions of individual isoforms in these processes remain poorly understood. We investigated the effects of three main murine isoforms (VEGF188, 164 and 120) on tumour cell behaviour, using a panel of fibrosarcoma cells we developed that express them individually under endogenous promoter control. Fibrosarcomas expressing only VEGF188 (fs188) or wild type controls (fswt) were typically mesenchymal, formed ruffles and displayed strong matrix-binding activity. VEGF164- and VEGF120-producing cells (fs164 and fs120 respectively) were less typically mesenchymal, lacked ruffles but formed abundant cell-cell contacts. On 3D collagen, fs188 cells remained mesenchymal while fs164 and fs120 cells adopted rounded/amoeboid and a mix of rounded and elongated morphologies respectively. Consistent with their mesenchymal characteristics, fs188 cells migrated significantly faster than fs164 or fs120 cells on 2D surfaces while contractility inhibitors accelerated fs164 and fs120 cell migration. VEGF164/VEGF120 expression correlated with faster proliferation rates and lower levels of spontaneous apoptosis than VEGF188 expression. Nevertheless, VEGF188 was associated with constitutively active/phosphorylated AKT, ERK1/2 and Stat3 proteins. Differences in proliferation rates and apoptosis could be explained by defective signalling downstream of pAKT to FOXO and GSK3 in fs188 and fswt cells, which also correlated with p27/p21 cyclin-dependent kinase inhibitor over-expression. All cells expressed tyrosine kinase VEGF receptors, but these were not active/activatable suggesting that inherent differences between the cell lines are governed by endogenous VEGF isoform expression through complex interactions that are independent of tyrosine kinase receptor activation. VEGF isoforms are emerging as potential biomarkers for anti-VEGF therapies. Our results reveal novel roles of individual isoforms associated with cancer growth and metastasis and highlight the importance of understanding their diverse actions.
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spelling pubmed-41319152014-08-19 Tumour Cells Expressing Single VEGF Isoforms Display Distinct Growth, Survival and Migration Characteristics Kanthou, Chryso Dachs, Gabi U. Lefley, Diane V. Steele, Andrew J. Coralli-Foxon, Claudia Harris, Sheila Greco, Olga Dos Santos, Sofia A. Reyes-Aldasoro, Constantino C. English, William R. Tozer, Gillian M. PLoS One Research Article Vascular endothelial growth factor-A (VEGF) is produced by most cancer cells as multiple isoforms, which display distinct biological activities. VEGF plays an undisputed role in tumour growth, vascularisation and metastasis; nevertheless the functions of individual isoforms in these processes remain poorly understood. We investigated the effects of three main murine isoforms (VEGF188, 164 and 120) on tumour cell behaviour, using a panel of fibrosarcoma cells we developed that express them individually under endogenous promoter control. Fibrosarcomas expressing only VEGF188 (fs188) or wild type controls (fswt) were typically mesenchymal, formed ruffles and displayed strong matrix-binding activity. VEGF164- and VEGF120-producing cells (fs164 and fs120 respectively) were less typically mesenchymal, lacked ruffles but formed abundant cell-cell contacts. On 3D collagen, fs188 cells remained mesenchymal while fs164 and fs120 cells adopted rounded/amoeboid and a mix of rounded and elongated morphologies respectively. Consistent with their mesenchymal characteristics, fs188 cells migrated significantly faster than fs164 or fs120 cells on 2D surfaces while contractility inhibitors accelerated fs164 and fs120 cell migration. VEGF164/VEGF120 expression correlated with faster proliferation rates and lower levels of spontaneous apoptosis than VEGF188 expression. Nevertheless, VEGF188 was associated with constitutively active/phosphorylated AKT, ERK1/2 and Stat3 proteins. Differences in proliferation rates and apoptosis could be explained by defective signalling downstream of pAKT to FOXO and GSK3 in fs188 and fswt cells, which also correlated with p27/p21 cyclin-dependent kinase inhibitor over-expression. All cells expressed tyrosine kinase VEGF receptors, but these were not active/activatable suggesting that inherent differences between the cell lines are governed by endogenous VEGF isoform expression through complex interactions that are independent of tyrosine kinase receptor activation. VEGF isoforms are emerging as potential biomarkers for anti-VEGF therapies. Our results reveal novel roles of individual isoforms associated with cancer growth and metastasis and highlight the importance of understanding their diverse actions. Public Library of Science 2014-08-13 /pmc/articles/PMC4131915/ /pubmed/25119572 http://dx.doi.org/10.1371/journal.pone.0104015 Text en © 2014 Kanthou 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
Kanthou, Chryso
Dachs, Gabi U.
Lefley, Diane V.
Steele, Andrew J.
Coralli-Foxon, Claudia
Harris, Sheila
Greco, Olga
Dos Santos, Sofia A.
Reyes-Aldasoro, Constantino C.
English, William R.
Tozer, Gillian M.
Tumour Cells Expressing Single VEGF Isoforms Display Distinct Growth, Survival and Migration Characteristics
title Tumour Cells Expressing Single VEGF Isoforms Display Distinct Growth, Survival and Migration Characteristics
title_full Tumour Cells Expressing Single VEGF Isoforms Display Distinct Growth, Survival and Migration Characteristics
title_fullStr Tumour Cells Expressing Single VEGF Isoforms Display Distinct Growth, Survival and Migration Characteristics
title_full_unstemmed Tumour Cells Expressing Single VEGF Isoforms Display Distinct Growth, Survival and Migration Characteristics
title_short Tumour Cells Expressing Single VEGF Isoforms Display Distinct Growth, Survival and Migration Characteristics
title_sort tumour cells expressing single vegf isoforms display distinct growth, survival and migration characteristics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4131915/
https://www.ncbi.nlm.nih.gov/pubmed/25119572
http://dx.doi.org/10.1371/journal.pone.0104015
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