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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 (H3-K27M) mutations most frequently occur in diffuse midline gliomas (DMGs) of the childhood pons but are also increasingly recognized in adults. Their potential heterogeneity at different ages and midline locations is vastly understudied. Here, through dissecting th...

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Autores principales: Liu, Ilon, Jiang, Li, Samuelsson, Erik R., Marco Salas, Sergio, Beck, Alexander, Hack, Olivia A., Jeong, Daeun, Shaw, McKenzie L., Englinger, Bernhard, LaBelle, Jenna, Mire, Hafsa M., Madlener, Sibylle, Mayr, Lisa, Quezada, Michael A., Trissal, Maria, Panditharatna, Eshini, Ernst, Kati J., Vogelzang, Jayne, Gatesman, Taylor A., Halbert, Matthew E., Palova, Hana, Pokorna, Petra, Sterba, Jaroslav, Slaby, Ondrej, Geyeregger, Rene, Diaz, Aaron, Findlay, Izac J., Dun, Matthew D., Resnick, Adam, Suvà, Mario L., Jones, David T. W., Agnihotri, Sameer, Svedlund, Jessica, Koschmann, Carl, Haberler, Christine, Czech, Thomas, Slavc, Irene, Cotter, Jennifer A., Ligon, Keith L., Alexandrescu, Sanda, Yung, W. K. Alfred, Arrillaga-Romany, Isabel, Gojo, Johannes, Monje, Michelle, Nilsson, Mats, Filbin, Mariella G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group US 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9729116/
https://www.ncbi.nlm.nih.gov/pubmed/36471067
http://dx.doi.org/10.1038/s41588-022-01236-3
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author Liu, Ilon
Jiang, Li
Samuelsson, Erik R.
Marco Salas, Sergio
Beck, Alexander
Hack, Olivia A.
Jeong, Daeun
Shaw, McKenzie L.
Englinger, Bernhard
LaBelle, Jenna
Mire, Hafsa M.
Madlener, Sibylle
Mayr, Lisa
Quezada, Michael A.
Trissal, Maria
Panditharatna, Eshini
Ernst, Kati J.
Vogelzang, Jayne
Gatesman, Taylor A.
Halbert, Matthew E.
Palova, Hana
Pokorna, Petra
Sterba, Jaroslav
Slaby, Ondrej
Geyeregger, Rene
Diaz, Aaron
Findlay, Izac J.
Dun, Matthew D.
Resnick, Adam
Suvà, Mario L.
Jones, David T. W.
Agnihotri, Sameer
Svedlund, Jessica
Koschmann, Carl
Haberler, Christine
Czech, Thomas
Slavc, Irene
Cotter, Jennifer A.
Ligon, Keith L.
Alexandrescu, Sanda
Yung, W. K. Alfred
Arrillaga-Romany, Isabel
Gojo, Johannes
Monje, Michelle
Nilsson, Mats
Filbin, Mariella G.
author_facet Liu, Ilon
Jiang, Li
Samuelsson, Erik R.
Marco Salas, Sergio
Beck, Alexander
Hack, Olivia A.
Jeong, Daeun
Shaw, McKenzie L.
Englinger, Bernhard
LaBelle, Jenna
Mire, Hafsa M.
Madlener, Sibylle
Mayr, Lisa
Quezada, Michael A.
Trissal, Maria
Panditharatna, Eshini
Ernst, Kati J.
Vogelzang, Jayne
Gatesman, Taylor A.
Halbert, Matthew E.
Palova, Hana
Pokorna, Petra
Sterba, Jaroslav
Slaby, Ondrej
Geyeregger, Rene
Diaz, Aaron
Findlay, Izac J.
Dun, Matthew D.
Resnick, Adam
Suvà, Mario L.
Jones, David T. W.
Agnihotri, Sameer
Svedlund, Jessica
Koschmann, Carl
Haberler, Christine
Czech, Thomas
Slavc, Irene
Cotter, Jennifer A.
Ligon, Keith L.
Alexandrescu, Sanda
Yung, W. K. Alfred
Arrillaga-Romany, Isabel
Gojo, Johannes
Monje, Michelle
Nilsson, Mats
Filbin, Mariella G.
author_sort Liu, Ilon
collection PubMed
description Histone 3 lysine27-to-methionine (H3-K27M) mutations most frequently occur in diffuse midline gliomas (DMGs) of the childhood pons but are also increasingly recognized in adults. Their potential heterogeneity at different ages and midline locations is vastly understudied. Here, through dissecting the single-cell transcriptomic, epigenomic and spatial architectures of a comprehensive cohort of patient H3-K27M DMGs, we delineate how age and anatomical location shape glioma cell-intrinsic and -extrinsic features in light of the shared driver mutation. We show that stem-like oligodendroglial precursor-like cells, present across all clinico-anatomical groups, display varying levels of maturation dependent on location. We reveal a previously underappreciated relationship between mesenchymal cancer cell states and age, linked to age-dependent differences in the immune microenvironment. Further, we resolve the spatial organization of H3-K27M DMG cell populations and identify a mitotic oligodendroglial-lineage niche. Collectively, our study provides a powerful framework for rational modeling and therapeutic interventions.
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spelling pubmed-97291162022-12-09 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 R. Marco Salas, Sergio Beck, Alexander Hack, Olivia A. Jeong, Daeun Shaw, McKenzie L. Englinger, Bernhard LaBelle, Jenna Mire, Hafsa M. Madlener, Sibylle Mayr, Lisa Quezada, Michael A. Trissal, Maria Panditharatna, Eshini Ernst, Kati J. Vogelzang, Jayne Gatesman, Taylor A. Halbert, Matthew E. Palova, Hana Pokorna, Petra Sterba, Jaroslav Slaby, Ondrej Geyeregger, Rene Diaz, Aaron Findlay, Izac J. Dun, Matthew D. Resnick, Adam Suvà, Mario L. Jones, David T. W. Agnihotri, Sameer Svedlund, Jessica Koschmann, Carl Haberler, Christine Czech, Thomas Slavc, Irene Cotter, Jennifer A. Ligon, Keith L. Alexandrescu, Sanda Yung, W. K. Alfred Arrillaga-Romany, Isabel Gojo, Johannes Monje, Michelle Nilsson, Mats Filbin, Mariella G. Nat Genet Article Histone 3 lysine27-to-methionine (H3-K27M) mutations most frequently occur in diffuse midline gliomas (DMGs) of the childhood pons but are also increasingly recognized in adults. Their potential heterogeneity at different ages and midline locations is vastly understudied. Here, through dissecting the single-cell transcriptomic, epigenomic and spatial architectures of a comprehensive cohort of patient H3-K27M DMGs, we delineate how age and anatomical location shape glioma cell-intrinsic and -extrinsic features in light of the shared driver mutation. We show that stem-like oligodendroglial precursor-like cells, present across all clinico-anatomical groups, display varying levels of maturation dependent on location. We reveal a previously underappreciated relationship between mesenchymal cancer cell states and age, linked to age-dependent differences in the immune microenvironment. Further, we resolve the spatial organization of H3-K27M DMG cell populations and identify a mitotic oligodendroglial-lineage niche. Collectively, our study provides a powerful framework for rational modeling and therapeutic interventions. Nature Publishing Group US 2022-12-05 2022 /pmc/articles/PMC9729116/ /pubmed/36471067 http://dx.doi.org/10.1038/s41588-022-01236-3 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Liu, Ilon
Jiang, Li
Samuelsson, Erik R.
Marco Salas, Sergio
Beck, Alexander
Hack, Olivia A.
Jeong, Daeun
Shaw, McKenzie L.
Englinger, Bernhard
LaBelle, Jenna
Mire, Hafsa M.
Madlener, Sibylle
Mayr, Lisa
Quezada, Michael A.
Trissal, Maria
Panditharatna, Eshini
Ernst, Kati J.
Vogelzang, Jayne
Gatesman, Taylor A.
Halbert, Matthew E.
Palova, Hana
Pokorna, Petra
Sterba, Jaroslav
Slaby, Ondrej
Geyeregger, Rene
Diaz, Aaron
Findlay, Izac J.
Dun, Matthew D.
Resnick, Adam
Suvà, Mario L.
Jones, David T. W.
Agnihotri, Sameer
Svedlund, Jessica
Koschmann, Carl
Haberler, Christine
Czech, Thomas
Slavc, Irene
Cotter, Jennifer A.
Ligon, Keith L.
Alexandrescu, Sanda
Yung, W. K. Alfred
Arrillaga-Romany, Isabel
Gojo, Johannes
Monje, Michelle
Nilsson, Mats
Filbin, Mariella G.
The landscape of tumor cell states and spatial organization in H3-K27M mutant diffuse midline glioma across age and location
title The landscape of tumor cell states and spatial organization in H3-K27M mutant diffuse midline glioma across age and location
title_full The landscape of tumor cell states and spatial organization in H3-K27M mutant diffuse midline glioma across age and location
title_fullStr The landscape of tumor cell states and spatial organization in H3-K27M mutant diffuse midline glioma across age and location
title_full_unstemmed The landscape of tumor cell states and spatial organization in H3-K27M mutant diffuse midline glioma across age and location
title_short The landscape of tumor cell states and spatial organization in H3-K27M mutant diffuse midline glioma across age and location
title_sort landscape of tumor cell states and spatial organization in h3-k27m mutant diffuse midline glioma across age and location
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9729116/
https://www.ncbi.nlm.nih.gov/pubmed/36471067
http://dx.doi.org/10.1038/s41588-022-01236-3
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