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HGG-06. EARLY GABAERGIC NEURONAL LINEAGE DEFINES DEPENDENCIES IN HISTONE H3 G34R/V GLIOMA

High-grade gliomas harboring H3 G34R/V mutations exclusively occur in the cerebral hemispheres of adolescents and young adults, suggesting a distinct neurodevelopmental origin. Combining multimodal bulk and single-cell genomics with unbiased genome-scale CRISPR/Cas9 approaches, we here describe a GA...

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Autores principales: Liu, Ilon, Bjerke, Lynn, Cruzeiro, Gustavo Alencastro Veiga, Rogers, Rebecca F, Grabovska, Yura, Panditharatna, Eshini, Mackay, Alan, Barron, Tara, Shaw, McKenzie, Hoffman, Samantha E, Hack, Olivia A, Quezada, Michael A, Dempster, Joshua, Temelso, Sara, Englinger, Bernhard, Molinari, Valeria, Mire, Hafsa M, Jiang, Li, Madlener, Sibylle, Mayr, Lisa, Dorfer, Christian, Geyeregger, Rene, Rota, Christopher, Ricken, Gerda, Alexandrescu, Sanda, Braun, Emelie, Danan-Gotthold, Miri, Hu, Lijuan, Siletti, Kimberly, Sundstroem, Erik, Hodge, Rebecca, Lein, Ed, Agnihotri, Sameer, Eisenstat, David D, Carceller, Fernando, Stapleton, Simon, Bleil, Cristina, Mastronuzzi, Angela, Cole, Kristina A, Waanders, Angela J, Carcaboso, Angel Montero, Vinci, Maria, Hargrave, Darren, Haberler, Christine, Gojo, Johannes, Slavc, Irene, Linnarsson, Sten, Monje, Michelle, Jones, Chris, Filbin, Mariella G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8168148/
http://dx.doi.org/10.1093/neuonc/noab090.072
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author Liu, Ilon
Bjerke, Lynn
Cruzeiro, Gustavo Alencastro Veiga
Rogers, Rebecca F
Grabovska, Yura
Panditharatna, Eshini
Mackay, Alan
Barron, Tara
Shaw, McKenzie
Hoffman, Samantha E
Hack, Olivia A
Quezada, Michael A
Dempster, Joshua
Temelso, Sara
Englinger, Bernhard
Molinari, Valeria
Mire, Hafsa M
Jiang, Li
Madlener, Sibylle
Mayr, Lisa
Dorfer, Christian
Geyeregger, Rene
Rota, Christopher
Ricken, Gerda
Alexandrescu, Sanda
Braun, Emelie
Danan-Gotthold, Miri
Hu, Lijuan
Siletti, Kimberly
Sundstroem, Erik
Hodge, Rebecca
Lein, Ed
Agnihotri, Sameer
Eisenstat, David D
Carceller, Fernando
Stapleton, Simon
Bleil, Cristina
Mastronuzzi, Angela
Cole, Kristina A
Waanders, Angela J
Carcaboso, Angel Montero
Vinci, Maria
Hargrave, Darren
Haberler, Christine
Gojo, Johannes
Slavc, Irene
Linnarsson, Sten
Monje, Michelle
Jones, Chris
Filbin, Mariella G
author_facet Liu, Ilon
Bjerke, Lynn
Cruzeiro, Gustavo Alencastro Veiga
Rogers, Rebecca F
Grabovska, Yura
Panditharatna, Eshini
Mackay, Alan
Barron, Tara
Shaw, McKenzie
Hoffman, Samantha E
Hack, Olivia A
Quezada, Michael A
Dempster, Joshua
Temelso, Sara
Englinger, Bernhard
Molinari, Valeria
Mire, Hafsa M
Jiang, Li
Madlener, Sibylle
Mayr, Lisa
Dorfer, Christian
Geyeregger, Rene
Rota, Christopher
Ricken, Gerda
Alexandrescu, Sanda
Braun, Emelie
Danan-Gotthold, Miri
Hu, Lijuan
Siletti, Kimberly
Sundstroem, Erik
Hodge, Rebecca
Lein, Ed
Agnihotri, Sameer
Eisenstat, David D
Carceller, Fernando
Stapleton, Simon
Bleil, Cristina
Mastronuzzi, Angela
Cole, Kristina A
Waanders, Angela J
Carcaboso, Angel Montero
Vinci, Maria
Hargrave, Darren
Haberler, Christine
Gojo, Johannes
Slavc, Irene
Linnarsson, Sten
Monje, Michelle
Jones, Chris
Filbin, Mariella G
author_sort Liu, Ilon
collection PubMed
description High-grade gliomas harboring H3 G34R/V mutations exclusively occur in the cerebral hemispheres of adolescents and young adults, suggesting a distinct neurodevelopmental origin. Combining multimodal bulk and single-cell genomics with unbiased genome-scale CRISPR/Cas9 approaches, we here describe a GABAergic interneuron progenitor lineage as the most likely context from which these H3 G34R/V mutations drive gliomagenesis, conferring unique and tumor-selective gene targets essential for glioma cell survival, as validated genetically and pharmacologically. Phenotypically, we demonstrate that while H3 G34R/V glioma cells harbor the neurotransmitter GABA, they are developmentally stalled, and do not induce the neuronal hyperexcitability described in other glioma subtypes. These findings offer a striking counter-example to the prevailing view of glioma origins in glial precursor cells, resulting in distinct cellular, microenvironmental, and therapeutic consequences.
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spelling pubmed-81681482021-06-02 HGG-06. EARLY GABAERGIC NEURONAL LINEAGE DEFINES DEPENDENCIES IN HISTONE H3 G34R/V GLIOMA Liu, Ilon Bjerke, Lynn Cruzeiro, Gustavo Alencastro Veiga Rogers, Rebecca F Grabovska, Yura Panditharatna, Eshini Mackay, Alan Barron, Tara Shaw, McKenzie Hoffman, Samantha E Hack, Olivia A Quezada, Michael A Dempster, Joshua Temelso, Sara Englinger, Bernhard Molinari, Valeria Mire, Hafsa M Jiang, Li Madlener, Sibylle Mayr, Lisa Dorfer, Christian Geyeregger, Rene Rota, Christopher Ricken, Gerda Alexandrescu, Sanda Braun, Emelie Danan-Gotthold, Miri Hu, Lijuan Siletti, Kimberly Sundstroem, Erik Hodge, Rebecca Lein, Ed Agnihotri, Sameer Eisenstat, David D Carceller, Fernando Stapleton, Simon Bleil, Cristina Mastronuzzi, Angela Cole, Kristina A Waanders, Angela J Carcaboso, Angel Montero Vinci, Maria Hargrave, Darren Haberler, Christine Gojo, Johannes Slavc, Irene Linnarsson, Sten Monje, Michelle Jones, Chris Filbin, Mariella G Neuro Oncol High Grade Gliomas High-grade gliomas harboring H3 G34R/V mutations exclusively occur in the cerebral hemispheres of adolescents and young adults, suggesting a distinct neurodevelopmental origin. Combining multimodal bulk and single-cell genomics with unbiased genome-scale CRISPR/Cas9 approaches, we here describe a GABAergic interneuron progenitor lineage as the most likely context from which these H3 G34R/V mutations drive gliomagenesis, conferring unique and tumor-selective gene targets essential for glioma cell survival, as validated genetically and pharmacologically. Phenotypically, we demonstrate that while H3 G34R/V glioma cells harbor the neurotransmitter GABA, they are developmentally stalled, and do not induce the neuronal hyperexcitability described in other glioma subtypes. These findings offer a striking counter-example to the prevailing view of glioma origins in glial precursor cells, resulting in distinct cellular, microenvironmental, and therapeutic consequences. Oxford University Press 2021-06-01 /pmc/articles/PMC8168148/ http://dx.doi.org/10.1093/neuonc/noab090.072 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com. https://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/ (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 High Grade Gliomas
Liu, Ilon
Bjerke, Lynn
Cruzeiro, Gustavo Alencastro Veiga
Rogers, Rebecca F
Grabovska, Yura
Panditharatna, Eshini
Mackay, Alan
Barron, Tara
Shaw, McKenzie
Hoffman, Samantha E
Hack, Olivia A
Quezada, Michael A
Dempster, Joshua
Temelso, Sara
Englinger, Bernhard
Molinari, Valeria
Mire, Hafsa M
Jiang, Li
Madlener, Sibylle
Mayr, Lisa
Dorfer, Christian
Geyeregger, Rene
Rota, Christopher
Ricken, Gerda
Alexandrescu, Sanda
Braun, Emelie
Danan-Gotthold, Miri
Hu, Lijuan
Siletti, Kimberly
Sundstroem, Erik
Hodge, Rebecca
Lein, Ed
Agnihotri, Sameer
Eisenstat, David D
Carceller, Fernando
Stapleton, Simon
Bleil, Cristina
Mastronuzzi, Angela
Cole, Kristina A
Waanders, Angela J
Carcaboso, Angel Montero
Vinci, Maria
Hargrave, Darren
Haberler, Christine
Gojo, Johannes
Slavc, Irene
Linnarsson, Sten
Monje, Michelle
Jones, Chris
Filbin, Mariella G
HGG-06. EARLY GABAERGIC NEURONAL LINEAGE DEFINES DEPENDENCIES IN HISTONE H3 G34R/V GLIOMA
title HGG-06. EARLY GABAERGIC NEURONAL LINEAGE DEFINES DEPENDENCIES IN HISTONE H3 G34R/V GLIOMA
title_full HGG-06. EARLY GABAERGIC NEURONAL LINEAGE DEFINES DEPENDENCIES IN HISTONE H3 G34R/V GLIOMA
title_fullStr HGG-06. EARLY GABAERGIC NEURONAL LINEAGE DEFINES DEPENDENCIES IN HISTONE H3 G34R/V GLIOMA
title_full_unstemmed HGG-06. EARLY GABAERGIC NEURONAL LINEAGE DEFINES DEPENDENCIES IN HISTONE H3 G34R/V GLIOMA
title_short HGG-06. EARLY GABAERGIC NEURONAL LINEAGE DEFINES DEPENDENCIES IN HISTONE H3 G34R/V GLIOMA
title_sort hgg-06. early gabaergic neuronal lineage defines dependencies in histone h3 g34r/v glioma
topic High Grade Gliomas
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8168148/
http://dx.doi.org/10.1093/neuonc/noab090.072
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