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DIPG-20. DELINEATING MEDIATORS OF ONCOGENESIS IN FOXR2-EXPRESSING DIFFUSE MIDLINE GLIOMAS

BACKGROUND: Diffuse midline gliomas (DMGs) are a universally fatal brain tumor of childhood. While histone mutations are a critical tumor initiating event, they are insufficient to drive gliomagenesis. Histone mutations co-occur with somatic alterations in other pathways including TP53, MAPK, and MY...

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Autores principales: Tsai, Jessica, Cejas, Paloma, Coppola, Marissa, Wang, Dayle, Patel, Smruti, Wu, David, Arounleut, Phonepasong, Wei, Xin, Zhou, Ningxuan, Syamala, Sudeepa, Dubois, Frank, Pelton, Kristine, Vogelzang, Jayne, Sousa, Cecilia, Baguette, Audrey, Chen, Xiaolong, Condurat, Alexandra, Dixon-Clarke, Sarah, Zhou, Kevin, Lu, Sophie, Gonzalez, Elizabeth, Chacon, Madison, Digiacomo, Jeromy, Kumbhani, Rushil, Novikov, Dana, Tsoli, Maria, Ziegler, David, Dirksen, Uta, Jager, Natalie, Balsubramanian, Gnana Prakash, Kramm, Christof, Nathrath, Michaela, Bielack, Stefan, Baker, Suzanne, Zhang, Jinghui, McFarland, James, Getz, Gad, Aguet, Francois, Jabado, Nada, Witt, Olaf, Pfister, Stefan, Ligon, Keith, Hovestadt, Volker, Kleinman, Claudia, Long, Henry, Jones, David, Bandopadhayay, Pratiti, Phoenix, Timothy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10260201/
http://dx.doi.org/10.1093/neuonc/noad073.067
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author Tsai, Jessica
Cejas, Paloma
Coppola, Marissa
Wang, Dayle
Patel, Smruti
Wu, David
Arounleut, Phonepasong
Wei, Xin
Zhou, Ningxuan
Syamala, Sudeepa
Dubois, Frank
Pelton, Kristine
Vogelzang, Jayne
Sousa, Cecilia
Baguette, Audrey
Chen, Xiaolong
Condurat, Alexandra
Dixon-Clarke, Sarah
Zhou, Kevin
Lu, Sophie
Gonzalez, Elizabeth
Chacon, Madison
Digiacomo, Jeromy
Kumbhani, Rushil
Novikov, Dana
Tsoli, Maria
Ziegler, David
Dirksen, Uta
Jager, Natalie
Balsubramanian, Gnana Prakash
Kramm, Christof
Nathrath, Michaela
Bielack, Stefan
Baker, Suzanne
Zhang, Jinghui
McFarland, James
Getz, Gad
Aguet, Francois
Jabado, Nada
Witt, Olaf
Pfister, Stefan
Ligon, Keith
Hovestadt, Volker
Kleinman, Claudia
Long, Henry
Jones, David
Bandopadhayay, Pratiti
Phoenix, Timothy
author_facet Tsai, Jessica
Cejas, Paloma
Coppola, Marissa
Wang, Dayle
Patel, Smruti
Wu, David
Arounleut, Phonepasong
Wei, Xin
Zhou, Ningxuan
Syamala, Sudeepa
Dubois, Frank
Pelton, Kristine
Vogelzang, Jayne
Sousa, Cecilia
Baguette, Audrey
Chen, Xiaolong
Condurat, Alexandra
Dixon-Clarke, Sarah
Zhou, Kevin
Lu, Sophie
Gonzalez, Elizabeth
Chacon, Madison
Digiacomo, Jeromy
Kumbhani, Rushil
Novikov, Dana
Tsoli, Maria
Ziegler, David
Dirksen, Uta
Jager, Natalie
Balsubramanian, Gnana Prakash
Kramm, Christof
Nathrath, Michaela
Bielack, Stefan
Baker, Suzanne
Zhang, Jinghui
McFarland, James
Getz, Gad
Aguet, Francois
Jabado, Nada
Witt, Olaf
Pfister, Stefan
Ligon, Keith
Hovestadt, Volker
Kleinman, Claudia
Long, Henry
Jones, David
Bandopadhayay, Pratiti
Phoenix, Timothy
author_sort Tsai, Jessica
collection PubMed
description BACKGROUND: Diffuse midline gliomas (DMGs) are a universally fatal brain tumor of childhood. While histone mutations are a critical tumor initiating event, they are insufficient to drive gliomagenesis. Histone mutations co-occur with somatic alterations in other pathways including TP53, MAPK, and MYC signaling. However, the mechanisms through which these pathways are activated have not been fully elucidated. METHODS: We applied an integrative approach using transcriptomics, epigenetics, proteomics, in vitro cancer models, and in vivo mouse models to systematically evaluate how FOXR2 mediates gliomagenesis. RESULTS: We have recently found that a subset of DMGs aberrantly express FOXR2, a forkhead transcription factor. FOXR2 is both sufficient to enhance tumor formation, and necessary for FOXR2-expressing DMGs. While FOXR2 indeed enhances MYC protein stability, FOXR2 exerts oncogenesis through MYC-independent functions and specifically hijacks E26-transformation specific (ETS) transcriptional circuits and FOXR2 DNA-binding is highly enriched at ETS motifs. We have performed proteomic and phospho-proteomic analysis of FOXR2-expressing human neural stem cells to identify proteins and phospho-sites that are highly enriched in FOXR2-expressing cells. CONCLUSION: Taken together, this study elucidates how FOXR2 interacts with ETS transcription factors to mediate oncogenesis in FOXR2-expressing diffuse midline gliomas.
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spelling pubmed-102602012023-06-13 DIPG-20. DELINEATING MEDIATORS OF ONCOGENESIS IN FOXR2-EXPRESSING DIFFUSE MIDLINE GLIOMAS Tsai, Jessica Cejas, Paloma Coppola, Marissa Wang, Dayle Patel, Smruti Wu, David Arounleut, Phonepasong Wei, Xin Zhou, Ningxuan Syamala, Sudeepa Dubois, Frank Pelton, Kristine Vogelzang, Jayne Sousa, Cecilia Baguette, Audrey Chen, Xiaolong Condurat, Alexandra Dixon-Clarke, Sarah Zhou, Kevin Lu, Sophie Gonzalez, Elizabeth Chacon, Madison Digiacomo, Jeromy Kumbhani, Rushil Novikov, Dana Tsoli, Maria Ziegler, David Dirksen, Uta Jager, Natalie Balsubramanian, Gnana Prakash Kramm, Christof Nathrath, Michaela Bielack, Stefan Baker, Suzanne Zhang, Jinghui McFarland, James Getz, Gad Aguet, Francois Jabado, Nada Witt, Olaf Pfister, Stefan Ligon, Keith Hovestadt, Volker Kleinman, Claudia Long, Henry Jones, David Bandopadhayay, Pratiti Phoenix, Timothy Neuro Oncol Final Category: Diffuse Intrinsic Pontine Glioma/Diffuse Midline Gliomas - DPIG BACKGROUND: Diffuse midline gliomas (DMGs) are a universally fatal brain tumor of childhood. While histone mutations are a critical tumor initiating event, they are insufficient to drive gliomagenesis. Histone mutations co-occur with somatic alterations in other pathways including TP53, MAPK, and MYC signaling. However, the mechanisms through which these pathways are activated have not been fully elucidated. METHODS: We applied an integrative approach using transcriptomics, epigenetics, proteomics, in vitro cancer models, and in vivo mouse models to systematically evaluate how FOXR2 mediates gliomagenesis. RESULTS: We have recently found that a subset of DMGs aberrantly express FOXR2, a forkhead transcription factor. FOXR2 is both sufficient to enhance tumor formation, and necessary for FOXR2-expressing DMGs. While FOXR2 indeed enhances MYC protein stability, FOXR2 exerts oncogenesis through MYC-independent functions and specifically hijacks E26-transformation specific (ETS) transcriptional circuits and FOXR2 DNA-binding is highly enriched at ETS motifs. We have performed proteomic and phospho-proteomic analysis of FOXR2-expressing human neural stem cells to identify proteins and phospho-sites that are highly enriched in FOXR2-expressing cells. CONCLUSION: Taken together, this study elucidates how FOXR2 interacts with ETS transcription factors to mediate oncogenesis in FOXR2-expressing diffuse midline gliomas. Oxford University Press 2023-06-12 /pmc/articles/PMC10260201/ http://dx.doi.org/10.1093/neuonc/noad073.067 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://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 Final Category: Diffuse Intrinsic Pontine Glioma/Diffuse Midline Gliomas - DPIG
Tsai, Jessica
Cejas, Paloma
Coppola, Marissa
Wang, Dayle
Patel, Smruti
Wu, David
Arounleut, Phonepasong
Wei, Xin
Zhou, Ningxuan
Syamala, Sudeepa
Dubois, Frank
Pelton, Kristine
Vogelzang, Jayne
Sousa, Cecilia
Baguette, Audrey
Chen, Xiaolong
Condurat, Alexandra
Dixon-Clarke, Sarah
Zhou, Kevin
Lu, Sophie
Gonzalez, Elizabeth
Chacon, Madison
Digiacomo, Jeromy
Kumbhani, Rushil
Novikov, Dana
Tsoli, Maria
Ziegler, David
Dirksen, Uta
Jager, Natalie
Balsubramanian, Gnana Prakash
Kramm, Christof
Nathrath, Michaela
Bielack, Stefan
Baker, Suzanne
Zhang, Jinghui
McFarland, James
Getz, Gad
Aguet, Francois
Jabado, Nada
Witt, Olaf
Pfister, Stefan
Ligon, Keith
Hovestadt, Volker
Kleinman, Claudia
Long, Henry
Jones, David
Bandopadhayay, Pratiti
Phoenix, Timothy
DIPG-20. DELINEATING MEDIATORS OF ONCOGENESIS IN FOXR2-EXPRESSING DIFFUSE MIDLINE GLIOMAS
title DIPG-20. DELINEATING MEDIATORS OF ONCOGENESIS IN FOXR2-EXPRESSING DIFFUSE MIDLINE GLIOMAS
title_full DIPG-20. DELINEATING MEDIATORS OF ONCOGENESIS IN FOXR2-EXPRESSING DIFFUSE MIDLINE GLIOMAS
title_fullStr DIPG-20. DELINEATING MEDIATORS OF ONCOGENESIS IN FOXR2-EXPRESSING DIFFUSE MIDLINE GLIOMAS
title_full_unstemmed DIPG-20. DELINEATING MEDIATORS OF ONCOGENESIS IN FOXR2-EXPRESSING DIFFUSE MIDLINE GLIOMAS
title_short DIPG-20. DELINEATING MEDIATORS OF ONCOGENESIS IN FOXR2-EXPRESSING DIFFUSE MIDLINE GLIOMAS
title_sort dipg-20. delineating mediators of oncogenesis in foxr2-expressing diffuse midline gliomas
topic Final Category: Diffuse Intrinsic Pontine Glioma/Diffuse Midline Gliomas - DPIG
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10260201/
http://dx.doi.org/10.1093/neuonc/noad073.067
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