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Characterization of a novel OTX2‐driven stem cell program in Group 3 and Group 4 medulloblastoma

Medulloblastoma (MB) is the most common malignant primary pediatric brain cancer. Among the most aggressive subtypes, Group 3 and Group 4 originate from stem/progenitor cells, frequently metastasize, and often display the worst prognosis, yet we know the least about the molecular mechanisms driving...

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Autores principales: Stromecki, Margaret, Tatari, Nazanin, Morrison, Ludivine Coudière, Kaur, Ravinder, Zagozewski, Jamie, Palidwor, Gareth, Ramaswamy, Vijay, Skowron, Patryk, Wölfl, Matthias, Milde, Till, Del Bigio, Marc R., Taylor, Michael D., Werbowetski‐Ogilvie, Tamra E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5891039/
https://www.ncbi.nlm.nih.gov/pubmed/29377567
http://dx.doi.org/10.1002/1878-0261.12177
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author Stromecki, Margaret
Tatari, Nazanin
Morrison, Ludivine Coudière
Kaur, Ravinder
Zagozewski, Jamie
Palidwor, Gareth
Ramaswamy, Vijay
Skowron, Patryk
Wölfl, Matthias
Milde, Till
Del Bigio, Marc R.
Taylor, Michael D.
Werbowetski‐Ogilvie, Tamra E.
author_facet Stromecki, Margaret
Tatari, Nazanin
Morrison, Ludivine Coudière
Kaur, Ravinder
Zagozewski, Jamie
Palidwor, Gareth
Ramaswamy, Vijay
Skowron, Patryk
Wölfl, Matthias
Milde, Till
Del Bigio, Marc R.
Taylor, Michael D.
Werbowetski‐Ogilvie, Tamra E.
author_sort Stromecki, Margaret
collection PubMed
description Medulloblastoma (MB) is the most common malignant primary pediatric brain cancer. Among the most aggressive subtypes, Group 3 and Group 4 originate from stem/progenitor cells, frequently metastasize, and often display the worst prognosis, yet we know the least about the molecular mechanisms driving their progression. Here, we show that the transcription factor orthodenticle homeobox 2 (OTX2) promotes self‐renewal while inhibiting differentiation in vitro and increases tumor initiation from MB stem/progenitor cells in vivo. To determine how OTX2 contributes to these processes, we employed complementary bioinformatic approaches to characterize the OTX2 regulatory network and identified novel relationships between OTX2 and genes associated with neuronal differentiation and axon guidance signaling in Group 3 and Group 4 MB stem/progenitor cells. In particular, OTX2 levels were negatively correlated with semaphorin (SEMA) signaling, as expression of 9 SEMA pathway genes is upregulated following OTX2 knockdown with some being potential direct OTX2 targets. Importantly, this negative correlation was also observed in patient samples, with lower expression of SEMA4D associated with poor outcome specifically in Group 4 tumors. Functional proof‐of‐principle studies demonstrated that increased levels of select SEMA pathway genes are associated with decreased self‐renewal and growth in vitro and in vivo and that RHO signaling, known to mediate the effects of SEMA genes, is contributing to the OTX2 KD phenotype. Our study provides mechanistic insight into the networks controlled by OTX2 in MB stem/progenitor cells and reveals novel roles for axon guidance genes and their downstream effectors as putative tumor suppressors in MB.
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spelling pubmed-58910392018-04-13 Characterization of a novel OTX2‐driven stem cell program in Group 3 and Group 4 medulloblastoma Stromecki, Margaret Tatari, Nazanin Morrison, Ludivine Coudière Kaur, Ravinder Zagozewski, Jamie Palidwor, Gareth Ramaswamy, Vijay Skowron, Patryk Wölfl, Matthias Milde, Till Del Bigio, Marc R. Taylor, Michael D. Werbowetski‐Ogilvie, Tamra E. Mol Oncol Research Articles Medulloblastoma (MB) is the most common malignant primary pediatric brain cancer. Among the most aggressive subtypes, Group 3 and Group 4 originate from stem/progenitor cells, frequently metastasize, and often display the worst prognosis, yet we know the least about the molecular mechanisms driving their progression. Here, we show that the transcription factor orthodenticle homeobox 2 (OTX2) promotes self‐renewal while inhibiting differentiation in vitro and increases tumor initiation from MB stem/progenitor cells in vivo. To determine how OTX2 contributes to these processes, we employed complementary bioinformatic approaches to characterize the OTX2 regulatory network and identified novel relationships between OTX2 and genes associated with neuronal differentiation and axon guidance signaling in Group 3 and Group 4 MB stem/progenitor cells. In particular, OTX2 levels were negatively correlated with semaphorin (SEMA) signaling, as expression of 9 SEMA pathway genes is upregulated following OTX2 knockdown with some being potential direct OTX2 targets. Importantly, this negative correlation was also observed in patient samples, with lower expression of SEMA4D associated with poor outcome specifically in Group 4 tumors. Functional proof‐of‐principle studies demonstrated that increased levels of select SEMA pathway genes are associated with decreased self‐renewal and growth in vitro and in vivo and that RHO signaling, known to mediate the effects of SEMA genes, is contributing to the OTX2 KD phenotype. Our study provides mechanistic insight into the networks controlled by OTX2 in MB stem/progenitor cells and reveals novel roles for axon guidance genes and their downstream effectors as putative tumor suppressors in MB. John Wiley and Sons Inc. 2018-03-01 2018-04 /pmc/articles/PMC5891039/ /pubmed/29377567 http://dx.doi.org/10.1002/1878-0261.12177 Text en © 2018 The Authors. Published by FEBS Press and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Stromecki, Margaret
Tatari, Nazanin
Morrison, Ludivine Coudière
Kaur, Ravinder
Zagozewski, Jamie
Palidwor, Gareth
Ramaswamy, Vijay
Skowron, Patryk
Wölfl, Matthias
Milde, Till
Del Bigio, Marc R.
Taylor, Michael D.
Werbowetski‐Ogilvie, Tamra E.
Characterization of a novel OTX2‐driven stem cell program in Group 3 and Group 4 medulloblastoma
title Characterization of a novel OTX2‐driven stem cell program in Group 3 and Group 4 medulloblastoma
title_full Characterization of a novel OTX2‐driven stem cell program in Group 3 and Group 4 medulloblastoma
title_fullStr Characterization of a novel OTX2‐driven stem cell program in Group 3 and Group 4 medulloblastoma
title_full_unstemmed Characterization of a novel OTX2‐driven stem cell program in Group 3 and Group 4 medulloblastoma
title_short Characterization of a novel OTX2‐driven stem cell program in Group 3 and Group 4 medulloblastoma
title_sort characterization of a novel otx2‐driven stem cell program in group 3 and group 4 medulloblastoma
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5891039/
https://www.ncbi.nlm.nih.gov/pubmed/29377567
http://dx.doi.org/10.1002/1878-0261.12177
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