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EPEN-12. COMPARING CELLULAR HIERARCHIES AND SPATIAL ARCHITECTURE ACROSS MOLECULAR SUBGROUPS OF SUPRATENTORIAL EPENDYMOMAS

Ependymomas (EPN) are among the most common and fatal pediatric brain tumors with currently no targeted therapies available. Molecular studies including genome-wide DNA methylation profiling have shown that supratentorial ependymoma is subdivided into subgroups characterized by distinct fusion prote...

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Autores principales: Jeong, Daeun, Maass, Kendra K, Ghasemi, David R, Englinger, Bernhard, Jiang, Li, Nascimento, Andrezza, Hack, Olivia A, Shaw, McKenzie L, Pfister, Stefan M, Kool, Marcel, Gojo, Johannes, Pajtler *, Kristian W, Filbin *, Mariella G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10260098/
http://dx.doi.org/10.1093/neuonc/noad073.116
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author Jeong, Daeun
Maass, Kendra K
Ghasemi, David R
Englinger, Bernhard
Jiang, Li
Nascimento, Andrezza
Hack, Olivia A
Shaw, McKenzie L
Pfister, Stefan M
Kool, Marcel
Gojo, Johannes
Pajtler *, Kristian W
Filbin *, Mariella G
author_facet Jeong, Daeun
Maass, Kendra K
Ghasemi, David R
Englinger, Bernhard
Jiang, Li
Nascimento, Andrezza
Hack, Olivia A
Shaw, McKenzie L
Pfister, Stefan M
Kool, Marcel
Gojo, Johannes
Pajtler *, Kristian W
Filbin *, Mariella G
author_sort Jeong, Daeun
collection PubMed
description Ependymomas (EPN) are among the most common and fatal pediatric brain tumors with currently no targeted therapies available. Molecular studies including genome-wide DNA methylation profiling have shown that supratentorial ependymoma is subdivided into subgroups characterized by distinct fusion proteins: ZFTA-RELA fusion-positive (ZFTA-RELA), YAP1 fusion-positive (ST-YAP1), and four alternative ZFTA fusion-positive (ZFTA-Cluster 1, ZFTA-Cluster 2, ZFTA-Cluster 3, and ZFTA-Cluster 4). ZFTA-RELA tumors have been identified as the most common and aggressive molecular group with high intra-tumoral heterogeneity. However, limited sample size and interpatient variability in previous studies highlight a critical need for comprehensive profiling of supratentorial ependymomas across a larger patient cohort. In particular, how ZFTA-RELA compares to other subgroups of supratentorial ependymoma is unknown. Here, we collected and profiled 44 supratentorial patient tumors encompassing ZFTA-RELA (n=21), ZFTA-Cluster 1 (n=6), ZFTA-Cluster 2 (n=4), ZFTA-Cluster 3 (n=7), ZFTA-Cluster 4 (n=2), and ST-YAP1 (n=4). We profiled all tumors by single cell/single nucleus RNA-sequencing, and further characterized ZFTA-RELA by single cell spatial transcriptomics. Within each patient’s tumor we find multiple normal and aberrant differentiation trajectories from neural progenitor-like cells towards glial-like, mesenchymal-like and ependymal-like cells. Using sequencing-based lineage tracing, we experimentally validate these computationally inferred cellular hierarchies in vitro. Notably, compared to ZFTA-RELA ependymomas we observed predominantly higher proportion of early neural progenitor-like cells in ZFTA-Cluster 2 and ZFTA-Cluster 3, while in ST-YAP1 greater representation of mature ependymal-like cells. These findings highlight differences in developmental and aberrant differentiation trajectories driven by combination of oncogenic fusions and cell of origin in supratentorial ependymoma subgroups. In addition, neural progenitor-like cells most highly express ZFTA-fusions and are spatially distinct from other cell states, highlighting oncogenic fusions driving tumorigenesis organized in spatial niches. Together, this study reveals previously unknown intra- and intertumoral heterogeneity across subgroups of supratentorial ependymoma, as well as distinct cellular and spatial architecture.
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spelling pubmed-102600982023-06-13 EPEN-12. COMPARING CELLULAR HIERARCHIES AND SPATIAL ARCHITECTURE ACROSS MOLECULAR SUBGROUPS OF SUPRATENTORIAL EPENDYMOMAS Jeong, Daeun Maass, Kendra K Ghasemi, David R Englinger, Bernhard Jiang, Li Nascimento, Andrezza Hack, Olivia A Shaw, McKenzie L Pfister, Stefan M Kool, Marcel Gojo, Johannes Pajtler *, Kristian W Filbin *, Mariella G Neuro Oncol Final Category: Ependymoma - EPEN Ependymomas (EPN) are among the most common and fatal pediatric brain tumors with currently no targeted therapies available. Molecular studies including genome-wide DNA methylation profiling have shown that supratentorial ependymoma is subdivided into subgroups characterized by distinct fusion proteins: ZFTA-RELA fusion-positive (ZFTA-RELA), YAP1 fusion-positive (ST-YAP1), and four alternative ZFTA fusion-positive (ZFTA-Cluster 1, ZFTA-Cluster 2, ZFTA-Cluster 3, and ZFTA-Cluster 4). ZFTA-RELA tumors have been identified as the most common and aggressive molecular group with high intra-tumoral heterogeneity. However, limited sample size and interpatient variability in previous studies highlight a critical need for comprehensive profiling of supratentorial ependymomas across a larger patient cohort. In particular, how ZFTA-RELA compares to other subgroups of supratentorial ependymoma is unknown. Here, we collected and profiled 44 supratentorial patient tumors encompassing ZFTA-RELA (n=21), ZFTA-Cluster 1 (n=6), ZFTA-Cluster 2 (n=4), ZFTA-Cluster 3 (n=7), ZFTA-Cluster 4 (n=2), and ST-YAP1 (n=4). We profiled all tumors by single cell/single nucleus RNA-sequencing, and further characterized ZFTA-RELA by single cell spatial transcriptomics. Within each patient’s tumor we find multiple normal and aberrant differentiation trajectories from neural progenitor-like cells towards glial-like, mesenchymal-like and ependymal-like cells. Using sequencing-based lineage tracing, we experimentally validate these computationally inferred cellular hierarchies in vitro. Notably, compared to ZFTA-RELA ependymomas we observed predominantly higher proportion of early neural progenitor-like cells in ZFTA-Cluster 2 and ZFTA-Cluster 3, while in ST-YAP1 greater representation of mature ependymal-like cells. These findings highlight differences in developmental and aberrant differentiation trajectories driven by combination of oncogenic fusions and cell of origin in supratentorial ependymoma subgroups. In addition, neural progenitor-like cells most highly express ZFTA-fusions and are spatially distinct from other cell states, highlighting oncogenic fusions driving tumorigenesis organized in spatial niches. Together, this study reveals previously unknown intra- and intertumoral heterogeneity across subgroups of supratentorial ependymoma, as well as distinct cellular and spatial architecture. Oxford University Press 2023-06-12 /pmc/articles/PMC10260098/ http://dx.doi.org/10.1093/neuonc/noad073.116 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: Ependymoma - EPEN
Jeong, Daeun
Maass, Kendra K
Ghasemi, David R
Englinger, Bernhard
Jiang, Li
Nascimento, Andrezza
Hack, Olivia A
Shaw, McKenzie L
Pfister, Stefan M
Kool, Marcel
Gojo, Johannes
Pajtler *, Kristian W
Filbin *, Mariella G
EPEN-12. COMPARING CELLULAR HIERARCHIES AND SPATIAL ARCHITECTURE ACROSS MOLECULAR SUBGROUPS OF SUPRATENTORIAL EPENDYMOMAS
title EPEN-12. COMPARING CELLULAR HIERARCHIES AND SPATIAL ARCHITECTURE ACROSS MOLECULAR SUBGROUPS OF SUPRATENTORIAL EPENDYMOMAS
title_full EPEN-12. COMPARING CELLULAR HIERARCHIES AND SPATIAL ARCHITECTURE ACROSS MOLECULAR SUBGROUPS OF SUPRATENTORIAL EPENDYMOMAS
title_fullStr EPEN-12. COMPARING CELLULAR HIERARCHIES AND SPATIAL ARCHITECTURE ACROSS MOLECULAR SUBGROUPS OF SUPRATENTORIAL EPENDYMOMAS
title_full_unstemmed EPEN-12. COMPARING CELLULAR HIERARCHIES AND SPATIAL ARCHITECTURE ACROSS MOLECULAR SUBGROUPS OF SUPRATENTORIAL EPENDYMOMAS
title_short EPEN-12. COMPARING CELLULAR HIERARCHIES AND SPATIAL ARCHITECTURE ACROSS MOLECULAR SUBGROUPS OF SUPRATENTORIAL EPENDYMOMAS
title_sort epen-12. comparing cellular hierarchies and spatial architecture across molecular subgroups of supratentorial ependymomas
topic Final Category: Ependymoma - EPEN
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10260098/
http://dx.doi.org/10.1093/neuonc/noad073.116
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