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DIPG-22. DISSECTING THE ONCOGENIC ROLE OF FOXR2 IN DIFFUSE INTRINSIC PONTINE GLIOMA

BACKGROUND: Diffuse intrinsic pontine gliomas (DIPGs) pose particular challenges for treatment. We recently completed a genomic analysis of close to 200 DIPGs and high-grade gliomas. We identified that nearly 10% of all DIPGs have increased expression of the fork head domain transcription factor FOX...

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Autores principales: Tsai, Jessica W, Patel, Smruti K, Bear, Heather, Dubois, Frank, Khadka, Prasidda, Lu, Sophie, Gonzalez, Elizabeth, Ligon, Keith, Bandopadhayay, Pratiti, Phoenix, Timothy N
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715282/
http://dx.doi.org/10.1093/neuonc/noaa222.072
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author Tsai, Jessica W
Patel, Smruti K
Bear, Heather
Dubois, Frank
Khadka, Prasidda
Lu, Sophie
Gonzalez, Elizabeth
Ligon, Keith
Bandopadhayay, Pratiti
Phoenix, Timothy N
author_facet Tsai, Jessica W
Patel, Smruti K
Bear, Heather
Dubois, Frank
Khadka, Prasidda
Lu, Sophie
Gonzalez, Elizabeth
Ligon, Keith
Bandopadhayay, Pratiti
Phoenix, Timothy N
author_sort Tsai, Jessica W
collection PubMed
description BACKGROUND: Diffuse intrinsic pontine gliomas (DIPGs) pose particular challenges for treatment. We recently completed a genomic analysis of close to 200 DIPGs and high-grade gliomas. We identified that nearly 10% of all DIPGs have increased expression of the fork head domain transcription factor FOXR2. We hypothesize that FOXR2 accelerates gliomagenesis in histone mutant DIPGs and represents a previously unexplored therapeutic target. METHODS: To determine whether FOXR2 is sufficient to mediate gliomagenesis, we applied an integrative genomics approach using both in vitro and in vivo DIPG models: mouse neural stem cell models expressing FOXR2, in vivo mouse models using in utero brainstem electroporation, patient-derived DIPG cell lines, and RNA sequencing analysis of human and mouse tumors expressing FOXR2. RESULTS: Our data shows that FOXR2 indeed is an oncogene that rapidly accelerates gliomagenesis using an in vivo brainstem in utero electroporation model of DIPG. In human tumors, increased FOXR2 expression is mutually exclusive with MYC amplification suggesting functional redundancy. In vivo, FOXR2 results in large brainstem gliomas and rapid neurologic decline of animals. Transcriptional profiling of these tumors demonstrates activation of MYC signaling pathways. In vitro, we have further identified patient-derived cell lines with increased expression of FOXR2. CONCLUSION: FOXR2 is sufficient to enhance gliomagenesis and represents a previously understudied therapeutic target for patients with the devastating disease DIPG.
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spelling pubmed-77152822020-12-09 DIPG-22. DISSECTING THE ONCOGENIC ROLE OF FOXR2 IN DIFFUSE INTRINSIC PONTINE GLIOMA Tsai, Jessica W Patel, Smruti K Bear, Heather Dubois, Frank Khadka, Prasidda Lu, Sophie Gonzalez, Elizabeth Ligon, Keith Bandopadhayay, Pratiti Phoenix, Timothy N Neuro Oncol Diffuse Midline Glioma/DIPG BACKGROUND: Diffuse intrinsic pontine gliomas (DIPGs) pose particular challenges for treatment. We recently completed a genomic analysis of close to 200 DIPGs and high-grade gliomas. We identified that nearly 10% of all DIPGs have increased expression of the fork head domain transcription factor FOXR2. We hypothesize that FOXR2 accelerates gliomagenesis in histone mutant DIPGs and represents a previously unexplored therapeutic target. METHODS: To determine whether FOXR2 is sufficient to mediate gliomagenesis, we applied an integrative genomics approach using both in vitro and in vivo DIPG models: mouse neural stem cell models expressing FOXR2, in vivo mouse models using in utero brainstem electroporation, patient-derived DIPG cell lines, and RNA sequencing analysis of human and mouse tumors expressing FOXR2. RESULTS: Our data shows that FOXR2 indeed is an oncogene that rapidly accelerates gliomagenesis using an in vivo brainstem in utero electroporation model of DIPG. In human tumors, increased FOXR2 expression is mutually exclusive with MYC amplification suggesting functional redundancy. In vivo, FOXR2 results in large brainstem gliomas and rapid neurologic decline of animals. Transcriptional profiling of these tumors demonstrates activation of MYC signaling pathways. In vitro, we have further identified patient-derived cell lines with increased expression of FOXR2. CONCLUSION: FOXR2 is sufficient to enhance gliomagenesis and represents a previously understudied therapeutic target for patients with the devastating disease DIPG. Oxford University Press 2020-12-04 /pmc/articles/PMC7715282/ http://dx.doi.org/10.1093/neuonc/noaa222.072 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Diffuse Midline Glioma/DIPG
Tsai, Jessica W
Patel, Smruti K
Bear, Heather
Dubois, Frank
Khadka, Prasidda
Lu, Sophie
Gonzalez, Elizabeth
Ligon, Keith
Bandopadhayay, Pratiti
Phoenix, Timothy N
DIPG-22. DISSECTING THE ONCOGENIC ROLE OF FOXR2 IN DIFFUSE INTRINSIC PONTINE GLIOMA
title DIPG-22. DISSECTING THE ONCOGENIC ROLE OF FOXR2 IN DIFFUSE INTRINSIC PONTINE GLIOMA
title_full DIPG-22. DISSECTING THE ONCOGENIC ROLE OF FOXR2 IN DIFFUSE INTRINSIC PONTINE GLIOMA
title_fullStr DIPG-22. DISSECTING THE ONCOGENIC ROLE OF FOXR2 IN DIFFUSE INTRINSIC PONTINE GLIOMA
title_full_unstemmed DIPG-22. DISSECTING THE ONCOGENIC ROLE OF FOXR2 IN DIFFUSE INTRINSIC PONTINE GLIOMA
title_short DIPG-22. DISSECTING THE ONCOGENIC ROLE OF FOXR2 IN DIFFUSE INTRINSIC PONTINE GLIOMA
title_sort dipg-22. dissecting the oncogenic role of foxr2 in diffuse intrinsic pontine glioma
topic Diffuse Midline Glioma/DIPG
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715282/
http://dx.doi.org/10.1093/neuonc/noaa222.072
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