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DIPG-08. THE LANDSCAPE OF TUMOR CELL STATES AND SPATIAL ORGANIZATION IN H3-K27M MUTANT DIFFUSE MIDLINE GLIOMA ACROSS AGE AND LOCATION

Histone 3 lysine27-to-methionine mutations (H3-K27M) frequently occur in childhood diffuse midline gliomas (DMGs) of the pons, thalamus, and spinal cord, presumed to be driven by the specific spatiotemporal context of these midline locations during postnatal development. While most common in the pon...

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Autores principales: Liu, Ilon, Jiang, Li, Samuelsson, Erik, Salas, Sergio Marco, Beck, Alexander, Hack, Olivia, Jeong, Daeun, Shaw, McKenzie, Englinger, Bernhard, LaBelle, Jenna, Mire, Hafsa, Madlener, Sibylle, Mayr, Lisa, Quezada, Michael, Trissal, Maria, Panditharatna, Eshini, Ernst, Kati, Vogelzang, Jayne, Gatesman, Taylor, Halbert, Matthew, Palova, Hana, Vesela, Petra, Sterba, Jaroslav, Slaby, Ondrej, Geyeregger, Rene, Diaz, Aaron, Findlay, Izac, Dun, Matt, Resnick, Adam, Suva, Mario, Jones, David, Agnihotri, Sameer, Ostlin, Jessica, Koschmann, Carl, Haberler, Christine, Czech, Thomas, Slavc, Irene, Cotter, Jennifer, Ligon, Keith, Alexandrescu, Sanda, Yung, W K Alfred, Arrillaga-Romany, Isabel, Gojo, Johannes, Monje, Michelle, Nilsson, Mats, Filbin, Mariella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10260036/
http://dx.doi.org/10.1093/neuonc/noad073.055
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author Liu, Ilon
Jiang, Li
Samuelsson, Erik
Salas, Sergio Marco
Beck, Alexander
Hack, Olivia
Jeong, Daeun
Shaw, McKenzie
Englinger, Bernhard
LaBelle, Jenna
Mire, Hafsa
Madlener, Sibylle
Mayr, Lisa
Quezada, Michael
Trissal, Maria
Panditharatna, Eshini
Ernst, Kati
Vogelzang, Jayne
Gatesman, Taylor
Halbert, Matthew
Palova, Hana
Vesela, Petra
Sterba, Jaroslav
Slaby, Ondrej
Geyeregger, Rene
Diaz, Aaron
Findlay, Izac
Dun, Matt
Resnick, Adam
Suva, Mario
Jones, David
Agnihotri, Sameer
Ostlin, Jessica
Koschmann, Carl
Haberler, Christine
Czech, Thomas
Slavc, Irene
Cotter, Jennifer
Ligon, Keith
Alexandrescu, Sanda
Yung, W K Alfred
Arrillaga-Romany, Isabel
Gojo, Johannes
Monje, Michelle
Nilsson, Mats
Filbin, Mariella
author_facet Liu, Ilon
Jiang, Li
Samuelsson, Erik
Salas, Sergio Marco
Beck, Alexander
Hack, Olivia
Jeong, Daeun
Shaw, McKenzie
Englinger, Bernhard
LaBelle, Jenna
Mire, Hafsa
Madlener, Sibylle
Mayr, Lisa
Quezada, Michael
Trissal, Maria
Panditharatna, Eshini
Ernst, Kati
Vogelzang, Jayne
Gatesman, Taylor
Halbert, Matthew
Palova, Hana
Vesela, Petra
Sterba, Jaroslav
Slaby, Ondrej
Geyeregger, Rene
Diaz, Aaron
Findlay, Izac
Dun, Matt
Resnick, Adam
Suva, Mario
Jones, David
Agnihotri, Sameer
Ostlin, Jessica
Koschmann, Carl
Haberler, Christine
Czech, Thomas
Slavc, Irene
Cotter, Jennifer
Ligon, Keith
Alexandrescu, Sanda
Yung, W K Alfred
Arrillaga-Romany, Isabel
Gojo, Johannes
Monje, Michelle
Nilsson, Mats
Filbin, Mariella
author_sort Liu, Ilon
collection PubMed
description Histone 3 lysine27-to-methionine mutations (H3-K27M) frequently occur in childhood diffuse midline gliomas (DMGs) of the pons, thalamus, and spinal cord, presumed to be driven by the specific spatiotemporal context of these midline locations during postnatal development. While most common in the pons and at mid-childhood ages, the same oncohistone mutation is recurrently detected in adult DMGs and throughout different midline regions. The potential heterogeneity of tumors at different ages and in different anatomical locations of the midline are vastly understudied. Through dissecting the transcriptomic, epigenomic and spatial architectures of a comprehensive cohort of patient H3-K27M DMGs - spanning the age range from 2-68 years and locations from spinal cord to thalamus - at single cell resolution, we delineate how age- and location-dependent contexts shape glioma cell-intrinsic and -extrinsic features in light of the shared driver mutation. We identify that oligodendrocyte precursor (OPC)-like cells constitute the stem-like compartment in H3-K27M DMGs across all clinico-anatomical groups, however, depending on location, display varying levels of maturity resembling less differentiated pre-OPCs or more mature OPCs further differentiated along the oligodendroglial lineage. We further demonstrate increased mesenchymal cell states in adult tumors, which we link to age-related differences in glioma-associated immune cell compartments, in particular an increase of macrophages in adult compared to pediatric tumors. Furthermore, we resolve the spatial organization of H3-K27M DMG cell types and states in intact patient tissues, identifying a local niche of the oligodendroglial lineage. Our study provides a powerful resource for rational modeling and therapeutic frameworks taking into account determinants of age and location in this lethal glioma group.
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spelling pubmed-102600362023-06-13 DIPG-08. THE LANDSCAPE OF TUMOR CELL STATES AND SPATIAL ORGANIZATION IN H3-K27M MUTANT DIFFUSE MIDLINE GLIOMA ACROSS AGE AND LOCATION Liu, Ilon Jiang, Li Samuelsson, Erik Salas, Sergio Marco Beck, Alexander Hack, Olivia Jeong, Daeun Shaw, McKenzie Englinger, Bernhard LaBelle, Jenna Mire, Hafsa Madlener, Sibylle Mayr, Lisa Quezada, Michael Trissal, Maria Panditharatna, Eshini Ernst, Kati Vogelzang, Jayne Gatesman, Taylor Halbert, Matthew Palova, Hana Vesela, Petra Sterba, Jaroslav Slaby, Ondrej Geyeregger, Rene Diaz, Aaron Findlay, Izac Dun, Matt Resnick, Adam Suva, Mario Jones, David Agnihotri, Sameer Ostlin, Jessica Koschmann, Carl Haberler, Christine Czech, Thomas Slavc, Irene Cotter, Jennifer Ligon, Keith Alexandrescu, Sanda Yung, W K Alfred Arrillaga-Romany, Isabel Gojo, Johannes Monje, Michelle Nilsson, Mats Filbin, Mariella Neuro Oncol Final Category: Diffuse Intrinsic Pontine Glioma/Diffuse Midline Gliomas - DPIG Histone 3 lysine27-to-methionine mutations (H3-K27M) frequently occur in childhood diffuse midline gliomas (DMGs) of the pons, thalamus, and spinal cord, presumed to be driven by the specific spatiotemporal context of these midline locations during postnatal development. While most common in the pons and at mid-childhood ages, the same oncohistone mutation is recurrently detected in adult DMGs and throughout different midline regions. The potential heterogeneity of tumors at different ages and in different anatomical locations of the midline are vastly understudied. Through dissecting the transcriptomic, epigenomic and spatial architectures of a comprehensive cohort of patient H3-K27M DMGs - spanning the age range from 2-68 years and locations from spinal cord to thalamus - at single cell resolution, we delineate how age- and location-dependent contexts shape glioma cell-intrinsic and -extrinsic features in light of the shared driver mutation. We identify that oligodendrocyte precursor (OPC)-like cells constitute the stem-like compartment in H3-K27M DMGs across all clinico-anatomical groups, however, depending on location, display varying levels of maturity resembling less differentiated pre-OPCs or more mature OPCs further differentiated along the oligodendroglial lineage. We further demonstrate increased mesenchymal cell states in adult tumors, which we link to age-related differences in glioma-associated immune cell compartments, in particular an increase of macrophages in adult compared to pediatric tumors. Furthermore, we resolve the spatial organization of H3-K27M DMG cell types and states in intact patient tissues, identifying a local niche of the oligodendroglial lineage. Our study provides a powerful resource for rational modeling and therapeutic frameworks taking into account determinants of age and location in this lethal glioma group. Oxford University Press 2023-06-12 /pmc/articles/PMC10260036/ http://dx.doi.org/10.1093/neuonc/noad073.055 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
Liu, Ilon
Jiang, Li
Samuelsson, Erik
Salas, Sergio Marco
Beck, Alexander
Hack, Olivia
Jeong, Daeun
Shaw, McKenzie
Englinger, Bernhard
LaBelle, Jenna
Mire, Hafsa
Madlener, Sibylle
Mayr, Lisa
Quezada, Michael
Trissal, Maria
Panditharatna, Eshini
Ernst, Kati
Vogelzang, Jayne
Gatesman, Taylor
Halbert, Matthew
Palova, Hana
Vesela, Petra
Sterba, Jaroslav
Slaby, Ondrej
Geyeregger, Rene
Diaz, Aaron
Findlay, Izac
Dun, Matt
Resnick, Adam
Suva, Mario
Jones, David
Agnihotri, Sameer
Ostlin, Jessica
Koschmann, Carl
Haberler, Christine
Czech, Thomas
Slavc, Irene
Cotter, Jennifer
Ligon, Keith
Alexandrescu, Sanda
Yung, W K Alfred
Arrillaga-Romany, Isabel
Gojo, Johannes
Monje, Michelle
Nilsson, Mats
Filbin, Mariella
DIPG-08. THE LANDSCAPE OF TUMOR CELL STATES AND SPATIAL ORGANIZATION IN H3-K27M MUTANT DIFFUSE MIDLINE GLIOMA ACROSS AGE AND LOCATION
title DIPG-08. THE LANDSCAPE OF TUMOR CELL STATES AND SPATIAL ORGANIZATION IN H3-K27M MUTANT DIFFUSE MIDLINE GLIOMA ACROSS AGE AND LOCATION
title_full DIPG-08. THE LANDSCAPE OF TUMOR CELL STATES AND SPATIAL ORGANIZATION IN H3-K27M MUTANT DIFFUSE MIDLINE GLIOMA ACROSS AGE AND LOCATION
title_fullStr DIPG-08. THE LANDSCAPE OF TUMOR CELL STATES AND SPATIAL ORGANIZATION IN H3-K27M MUTANT DIFFUSE MIDLINE GLIOMA ACROSS AGE AND LOCATION
title_full_unstemmed DIPG-08. THE LANDSCAPE OF TUMOR CELL STATES AND SPATIAL ORGANIZATION IN H3-K27M MUTANT DIFFUSE MIDLINE GLIOMA ACROSS AGE AND LOCATION
title_short DIPG-08. THE LANDSCAPE OF TUMOR CELL STATES AND SPATIAL ORGANIZATION IN H3-K27M MUTANT DIFFUSE MIDLINE GLIOMA ACROSS AGE AND LOCATION
title_sort dipg-08. the landscape of tumor cell states and spatial organization in h3-k27m mutant diffuse midline glioma across age and location
topic Final Category: Diffuse Intrinsic Pontine Glioma/Diffuse Midline Gliomas - DPIG
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10260036/
http://dx.doi.org/10.1093/neuonc/noad073.055
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