Cargando…

ATRT-28. SINGLE NUCLEI SEQUENCING REVEALS THE DIFFERENT PHENOTYPIC COMPOSITION OF THE ATRT SUBGROUPS

Atypical teratoid/rhabdoid tumors (ATRT) represents a genomically homogeneous disease characterized by loss of SMARCB1 protein in the vast majority of cases. In recent years, it has become clear that these tumors display a high degree of intertumoral heterogeneity with three molecularly distinct sub...

Descripción completa

Detalles Bibliográficos
Autores principales: Johann, Pascal, Büllesbach, Annette, Ernst, Kati, Okonechnikov, Konstantin, Jones, David T W, Pfister, Stefan M, Hasselblatt, Martin, Kool, Marcel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715748/
http://dx.doi.org/10.1093/neuonc/noaa222.027
_version_ 1783619028082753536
author Johann, Pascal
Büllesbach, Annette
Ernst, Kati
Okonechnikov, Konstantin
Jones, David T W
Pfister, Stefan M
Hasselblatt, Martin
Kool, Marcel
author_facet Johann, Pascal
Büllesbach, Annette
Ernst, Kati
Okonechnikov, Konstantin
Jones, David T W
Pfister, Stefan M
Hasselblatt, Martin
Kool, Marcel
author_sort Johann, Pascal
collection PubMed
description Atypical teratoid/rhabdoid tumors (ATRT) represents a genomically homogeneous disease characterized by loss of SMARCB1 protein in the vast majority of cases. In recent years, it has become clear that these tumors display a high degree of intertumoral heterogeneity with three molecularly distinct subgroups. However, the degree of intratumoral heterogeneity and the information on cellular subpopulations currently remains largely an unchartered territory. To explore the transcriptomic composition of ATRTs, we performed single nuclei RNA sequencing for 16 ATRTs representing all three molecular subgroups (5 ATRT-TYR, 7 ATRT-SHH, 4 ATRT-MYC). By performing tSNE cluster analyses of all the single cell data (~50.000 cells have been sequenced), we were able to gain unprecedented insights into the phenotypic composition of ATRTs and unravelled substantial differences between the three subgroups. Integrating transcriptomic information from non-neoplastic brain cells and the data derived from single nuclei sequencing, we found an OPC like gene signature in ATRT-SHH. In contrast, ATRT-TYR subpopulations overexpressed more markers of neuronal stem cells suggesting a larger fraction of undifferentiated cells in this subgroup. We also identified a subpopulation of cells with a clear overexpression of cell cycle associated genes (CDK4, CDKN3), predominantly present in ATRT-MYC samples, a finding which may harbour important consequences for a targeted therapy with e.g. CDK inhibitors. In summary, our analyses reveal different cellular compartments in ATRT and provide important insights into the cellular differentiation of the three ATRT-subgroups. Further analyses to achieve a specific mapping of ATRT to its physiological cell of origin are currently being pursued.
format Online
Article
Text
id pubmed-7715748
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-77157482020-12-09 ATRT-28. SINGLE NUCLEI SEQUENCING REVEALS THE DIFFERENT PHENOTYPIC COMPOSITION OF THE ATRT SUBGROUPS Johann, Pascal Büllesbach, Annette Ernst, Kati Okonechnikov, Konstantin Jones, David T W Pfister, Stefan M Hasselblatt, Martin Kool, Marcel Neuro Oncol Atypical Teratoid/Rhabdoid Tumors Atypical teratoid/rhabdoid tumors (ATRT) represents a genomically homogeneous disease characterized by loss of SMARCB1 protein in the vast majority of cases. In recent years, it has become clear that these tumors display a high degree of intertumoral heterogeneity with three molecularly distinct subgroups. However, the degree of intratumoral heterogeneity and the information on cellular subpopulations currently remains largely an unchartered territory. To explore the transcriptomic composition of ATRTs, we performed single nuclei RNA sequencing for 16 ATRTs representing all three molecular subgroups (5 ATRT-TYR, 7 ATRT-SHH, 4 ATRT-MYC). By performing tSNE cluster analyses of all the single cell data (~50.000 cells have been sequenced), we were able to gain unprecedented insights into the phenotypic composition of ATRTs and unravelled substantial differences between the three subgroups. Integrating transcriptomic information from non-neoplastic brain cells and the data derived from single nuclei sequencing, we found an OPC like gene signature in ATRT-SHH. In contrast, ATRT-TYR subpopulations overexpressed more markers of neuronal stem cells suggesting a larger fraction of undifferentiated cells in this subgroup. We also identified a subpopulation of cells with a clear overexpression of cell cycle associated genes (CDK4, CDKN3), predominantly present in ATRT-MYC samples, a finding which may harbour important consequences for a targeted therapy with e.g. CDK inhibitors. In summary, our analyses reveal different cellular compartments in ATRT and provide important insights into the cellular differentiation of the three ATRT-subgroups. Further analyses to achieve a specific mapping of ATRT to its physiological cell of origin are currently being pursued. Oxford University Press 2020-12-04 /pmc/articles/PMC7715748/ http://dx.doi.org/10.1093/neuonc/noaa222.027 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. http://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/), 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 Atypical Teratoid/Rhabdoid Tumors
Johann, Pascal
Büllesbach, Annette
Ernst, Kati
Okonechnikov, Konstantin
Jones, David T W
Pfister, Stefan M
Hasselblatt, Martin
Kool, Marcel
ATRT-28. SINGLE NUCLEI SEQUENCING REVEALS THE DIFFERENT PHENOTYPIC COMPOSITION OF THE ATRT SUBGROUPS
title ATRT-28. SINGLE NUCLEI SEQUENCING REVEALS THE DIFFERENT PHENOTYPIC COMPOSITION OF THE ATRT SUBGROUPS
title_full ATRT-28. SINGLE NUCLEI SEQUENCING REVEALS THE DIFFERENT PHENOTYPIC COMPOSITION OF THE ATRT SUBGROUPS
title_fullStr ATRT-28. SINGLE NUCLEI SEQUENCING REVEALS THE DIFFERENT PHENOTYPIC COMPOSITION OF THE ATRT SUBGROUPS
title_full_unstemmed ATRT-28. SINGLE NUCLEI SEQUENCING REVEALS THE DIFFERENT PHENOTYPIC COMPOSITION OF THE ATRT SUBGROUPS
title_short ATRT-28. SINGLE NUCLEI SEQUENCING REVEALS THE DIFFERENT PHENOTYPIC COMPOSITION OF THE ATRT SUBGROUPS
title_sort atrt-28. single nuclei sequencing reveals the different phenotypic composition of the atrt subgroups
topic Atypical Teratoid/Rhabdoid Tumors
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715748/
http://dx.doi.org/10.1093/neuonc/noaa222.027
work_keys_str_mv AT johannpascal atrt28singlenucleisequencingrevealsthedifferentphenotypiccompositionoftheatrtsubgroups
AT bullesbachannette atrt28singlenucleisequencingrevealsthedifferentphenotypiccompositionoftheatrtsubgroups
AT ernstkati atrt28singlenucleisequencingrevealsthedifferentphenotypiccompositionoftheatrtsubgroups
AT okonechnikovkonstantin atrt28singlenucleisequencingrevealsthedifferentphenotypiccompositionoftheatrtsubgroups
AT jonesdavidtw atrt28singlenucleisequencingrevealsthedifferentphenotypiccompositionoftheatrtsubgroups
AT pfisterstefanm atrt28singlenucleisequencingrevealsthedifferentphenotypiccompositionoftheatrtsubgroups
AT hasselblattmartin atrt28singlenucleisequencingrevealsthedifferentphenotypiccompositionoftheatrtsubgroups
AT koolmarcel atrt28singlenucleisequencingrevealsthedifferentphenotypiccompositionoftheatrtsubgroups