Cargando…

Activation of Sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway

Dysregulation of Sonic hedgehog (Shh) signaling has been implicated in glioma pathogenesis. Yet, the role of this pathway in gliomagenesis remains controversial because of the lack of relevant animal models. Using the cytokeratin 5 promoter, we ectopically expressed a constitutively active zebrafish...

Descripción completa

Detalles Bibliográficos
Autores principales: Ju, B, Chen, W, Spitsbergen, J M, Lu, J, Vogel, P, Peters, J L, Wang, Y-D, Orr, B A, Wu, J, Henson, H E, Jia, S, Parupalli, C, Taylor, M R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4038393/
https://www.ncbi.nlm.nih.gov/pubmed/24686726
http://dx.doi.org/10.1038/oncsis.2014.10
_version_ 1782318341662179328
author Ju, B
Chen, W
Spitsbergen, J M
Lu, J
Vogel, P
Peters, J L
Wang, Y-D
Orr, B A
Wu, J
Henson, H E
Jia, S
Parupalli, C
Taylor, M R
author_facet Ju, B
Chen, W
Spitsbergen, J M
Lu, J
Vogel, P
Peters, J L
Wang, Y-D
Orr, B A
Wu, J
Henson, H E
Jia, S
Parupalli, C
Taylor, M R
author_sort Ju, B
collection PubMed
description Dysregulation of Sonic hedgehog (Shh) signaling has been implicated in glioma pathogenesis. Yet, the role of this pathway in gliomagenesis remains controversial because of the lack of relevant animal models. Using the cytokeratin 5 promoter, we ectopically expressed a constitutively active zebrafish Smoothened (Smoa1) in neural progenitor cells and analyzed tumorigenic capacity of activated Shh signaling in both transient and stable transgenic fish. Transient transgenic fish overexpressing Smoa1 developed retinal and brain tumors, suggesting smoa1 is oncogenic in the zebrafish central nervous system (CNS). We further established stable transgenic lines that simultaneously developed optic pathway glioma (OPG) and various retinal tumors. In one of these lines, up to 80% of F1 and F2 fish developed tumors within 1 year of age. Microarray analysis of tumor samples showed upregulated expression of genes involved in the cell cycle, cancer signaling and Shh downstream targets ptc1, gli1 and gli2a. Tumors also exhibited specific gene signatures characteristic of radial glia and progenitor cells as transcriptions of radial glia genes cyp19a1b, s100β, blbp, gfap and the stem/progenitor genes nestin and sox2 were significantly upregulated. Overexpression of GFAP, S100β, BLBP and Sox2 was confirmed by immunofluorescence. We also detected overexpression of Mdm2 throughout the optic pathway in fish with OPG, therefore implicating the Mdm2–Tp53 pathway in glioma pathogenesis. In conclusion, we demonstrate that activated Shh signaling initiates tumorigenesis in the zebrafish CNS and provide the first OPG model not associated with neurofibromatosis 1.
format Online
Article
Text
id pubmed-4038393
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-40383932014-05-30 Activation of Sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway Ju, B Chen, W Spitsbergen, J M Lu, J Vogel, P Peters, J L Wang, Y-D Orr, B A Wu, J Henson, H E Jia, S Parupalli, C Taylor, M R Oncogenesis Original Article Dysregulation of Sonic hedgehog (Shh) signaling has been implicated in glioma pathogenesis. Yet, the role of this pathway in gliomagenesis remains controversial because of the lack of relevant animal models. Using the cytokeratin 5 promoter, we ectopically expressed a constitutively active zebrafish Smoothened (Smoa1) in neural progenitor cells and analyzed tumorigenic capacity of activated Shh signaling in both transient and stable transgenic fish. Transient transgenic fish overexpressing Smoa1 developed retinal and brain tumors, suggesting smoa1 is oncogenic in the zebrafish central nervous system (CNS). We further established stable transgenic lines that simultaneously developed optic pathway glioma (OPG) and various retinal tumors. In one of these lines, up to 80% of F1 and F2 fish developed tumors within 1 year of age. Microarray analysis of tumor samples showed upregulated expression of genes involved in the cell cycle, cancer signaling and Shh downstream targets ptc1, gli1 and gli2a. Tumors also exhibited specific gene signatures characteristic of radial glia and progenitor cells as transcriptions of radial glia genes cyp19a1b, s100β, blbp, gfap and the stem/progenitor genes nestin and sox2 were significantly upregulated. Overexpression of GFAP, S100β, BLBP and Sox2 was confirmed by immunofluorescence. We also detected overexpression of Mdm2 throughout the optic pathway in fish with OPG, therefore implicating the Mdm2–Tp53 pathway in glioma pathogenesis. In conclusion, we demonstrate that activated Shh signaling initiates tumorigenesis in the zebrafish CNS and provide the first OPG model not associated with neurofibromatosis 1. Nature Publishing Group 2014-03 2014-03-31 /pmc/articles/PMC4038393/ /pubmed/24686726 http://dx.doi.org/10.1038/oncsis.2014.10 Text en Copyright © 2014 Macmillan Publishers Limited This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Original Article
Ju, B
Chen, W
Spitsbergen, J M
Lu, J
Vogel, P
Peters, J L
Wang, Y-D
Orr, B A
Wu, J
Henson, H E
Jia, S
Parupalli, C
Taylor, M R
Activation of Sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway
title Activation of Sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway
title_full Activation of Sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway
title_fullStr Activation of Sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway
title_full_unstemmed Activation of Sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway
title_short Activation of Sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway
title_sort activation of sonic hedgehog signaling in neural progenitor cells promotes glioma development in the zebrafish optic pathway
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4038393/
https://www.ncbi.nlm.nih.gov/pubmed/24686726
http://dx.doi.org/10.1038/oncsis.2014.10
work_keys_str_mv AT jub activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT chenw activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT spitsbergenjm activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT luj activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT vogelp activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT petersjl activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT wangyd activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT orrba activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT wuj activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT hensonhe activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT jias activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT parupallic activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway
AT taylormr activationofsonichedgehogsignalinginneuralprogenitorcellspromotesgliomadevelopmentinthezebrafishopticpathway