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Zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer

Pancreatic adenocarcinoma, one of the worst malignancies of the exocrine pancreas, is a solid tumor with increasing incidence and mortality in industrialized countries. This condition is usually driven by oncogenic KRAS point mutations and evolves into a highly aggressive metastatic carcinoma due to...

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Autores principales: Schiavone, Marco, Rampazzo, Elena, Casari, Alessandro, Battilana, Giusy, Persano, Luca, Moro, Enrico, Liu, Shu, Leach, Steve D., Tiso, Natascia, Argenton, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Limited 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4073277/
https://www.ncbi.nlm.nih.gov/pubmed/24878567
http://dx.doi.org/10.1242/dmm.014969
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author Schiavone, Marco
Rampazzo, Elena
Casari, Alessandro
Battilana, Giusy
Persano, Luca
Moro, Enrico
Liu, Shu
Leach, Steve D.
Tiso, Natascia
Argenton, Francesco
author_facet Schiavone, Marco
Rampazzo, Elena
Casari, Alessandro
Battilana, Giusy
Persano, Luca
Moro, Enrico
Liu, Shu
Leach, Steve D.
Tiso, Natascia
Argenton, Francesco
author_sort Schiavone, Marco
collection PubMed
description Pancreatic adenocarcinoma, one of the worst malignancies of the exocrine pancreas, is a solid tumor with increasing incidence and mortality in industrialized countries. This condition is usually driven by oncogenic KRAS point mutations and evolves into a highly aggressive metastatic carcinoma due to secondary gene mutations and unbalanced expression of genes involved in the specific signaling pathways. To examine in vivo the effects of KRAS(G12D) during pancreatic cancer progression and time correlation with cancer signaling pathway activities, we have generated a zebrafish model of pancreatic adenocarcinoma in which eGFP-KRAS(G12D) expression was specifically driven to the pancreatic tissue by using the GAL4/UAS conditional expression system. Outcrossing the inducible oncogenic KRAS(G12D) line with transgenic zebrafish reporters, harboring specific signaling responsive elements of transcriptional effectors, we were able to follow TGFβ, Notch, Bmp and Shh activities during tumor development. Zebrafish transgenic lines expressing eGFP-KRAS(G12D) showed normal exocrine pancreas development until 3 weeks post fertilization (wpf). From 4 to 24 wpf we observed several degrees of acinar lesions, characterized by an increase in mesenchymal cells and mixed acinar/ductal features, followed by progressive bowel and liver infiltrations and, finally, highly aggressive carcinoma. Moreover, live imaging analysis of the exocrine pancreatic tissue revealed an increasing number of KRAS-positive cells and progressive activation of TGFβ and Notch pathways. Increase in TGFβ, following KRAS(G12D) activation, was confirmed in a concomitant model of medulloblastoma (MDB). Notch and Shh signaling activities during tumor onset were different between MDB and pancreatic adenocarcinoma, indicating a tissue-specific regulation of cell signaling pathways. Moreover, our results show that a living model of pancreatic adenocarcinoma joined with cell signaling reporters is a suitable tool for describing in vivo the signaling cascades and molecular mechanisms involved in tumor development and a potential platform to screen for novel oncostatic drugs.
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spelling pubmed-40732772014-07-17 Zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer Schiavone, Marco Rampazzo, Elena Casari, Alessandro Battilana, Giusy Persano, Luca Moro, Enrico Liu, Shu Leach, Steve D. Tiso, Natascia Argenton, Francesco Dis Model Mech Research Article Pancreatic adenocarcinoma, one of the worst malignancies of the exocrine pancreas, is a solid tumor with increasing incidence and mortality in industrialized countries. This condition is usually driven by oncogenic KRAS point mutations and evolves into a highly aggressive metastatic carcinoma due to secondary gene mutations and unbalanced expression of genes involved in the specific signaling pathways. To examine in vivo the effects of KRAS(G12D) during pancreatic cancer progression and time correlation with cancer signaling pathway activities, we have generated a zebrafish model of pancreatic adenocarcinoma in which eGFP-KRAS(G12D) expression was specifically driven to the pancreatic tissue by using the GAL4/UAS conditional expression system. Outcrossing the inducible oncogenic KRAS(G12D) line with transgenic zebrafish reporters, harboring specific signaling responsive elements of transcriptional effectors, we were able to follow TGFβ, Notch, Bmp and Shh activities during tumor development. Zebrafish transgenic lines expressing eGFP-KRAS(G12D) showed normal exocrine pancreas development until 3 weeks post fertilization (wpf). From 4 to 24 wpf we observed several degrees of acinar lesions, characterized by an increase in mesenchymal cells and mixed acinar/ductal features, followed by progressive bowel and liver infiltrations and, finally, highly aggressive carcinoma. Moreover, live imaging analysis of the exocrine pancreatic tissue revealed an increasing number of KRAS-positive cells and progressive activation of TGFβ and Notch pathways. Increase in TGFβ, following KRAS(G12D) activation, was confirmed in a concomitant model of medulloblastoma (MDB). Notch and Shh signaling activities during tumor onset were different between MDB and pancreatic adenocarcinoma, indicating a tissue-specific regulation of cell signaling pathways. Moreover, our results show that a living model of pancreatic adenocarcinoma joined with cell signaling reporters is a suitable tool for describing in vivo the signaling cascades and molecular mechanisms involved in tumor development and a potential platform to screen for novel oncostatic drugs. The Company of Biologists Limited 2014-07 2014-05-30 /pmc/articles/PMC4073277/ /pubmed/24878567 http://dx.doi.org/10.1242/dmm.014969 Text en © 2014. Published by The Company of Biologists Ltd This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Schiavone, Marco
Rampazzo, Elena
Casari, Alessandro
Battilana, Giusy
Persano, Luca
Moro, Enrico
Liu, Shu
Leach, Steve D.
Tiso, Natascia
Argenton, Francesco
Zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer
title Zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer
title_full Zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer
title_fullStr Zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer
title_full_unstemmed Zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer
title_short Zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer
title_sort zebrafish reporter lines reveal in vivo signaling pathway activities involved in pancreatic cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4073277/
https://www.ncbi.nlm.nih.gov/pubmed/24878567
http://dx.doi.org/10.1242/dmm.014969
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