Cargando…
EPEN-18. Oncogenic 3D genome conformations identify novel therapeutic targets in ependymoma
Ependymoma (EPN) is an aggressive pediatric tumor that occurs throughout the central nervous system. The two most aggressive molecular subgroups of EPN are the supratentorial ZFTA-fusion associated group (ST-EPN-ZFTA) and the posterior fossa group A (PF-EPN-A). Although the molecular characteristics...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9165136/ http://dx.doi.org/10.1093/neuonc/noac079.155 |
_version_ | 1784720317392879616 |
---|---|
author | Okonechnikov, Konstantin Camgöz, Aylin Park, Donglim Esther Chapman, Owen Hübner, Jens-Martin Jenseit, Anne Chakraborty, Abhijit Pagadala, Meghana Bump, Rosalind Chandran, Sahaana Kraft, Katherina Hidalgo, Rocio Acuna Reid, Derek Juarez, Edwin F Robinson, James T Pajtler, Kristian W Milde, Till Coufal, Nicole Levy, Michael Malicki, Denise Nahas, Shareef Snuderl, Matija Crawford, John Wechsler-Reya, Robert Mundlos, Stefan Schmitt, Anthony Carter, Hannah Michealraj, Kulandaimanuvel Antony Kumar, Sachin A Taylor, Michael D Rich, Jeremy Mesirov, Jill Pfister, Stefan P Ay, Ferhat Dixon, Jesse Kool, Marcel Chavez, Lukas |
author_facet | Okonechnikov, Konstantin Camgöz, Aylin Park, Donglim Esther Chapman, Owen Hübner, Jens-Martin Jenseit, Anne Chakraborty, Abhijit Pagadala, Meghana Bump, Rosalind Chandran, Sahaana Kraft, Katherina Hidalgo, Rocio Acuna Reid, Derek Juarez, Edwin F Robinson, James T Pajtler, Kristian W Milde, Till Coufal, Nicole Levy, Michael Malicki, Denise Nahas, Shareef Snuderl, Matija Crawford, John Wechsler-Reya, Robert Mundlos, Stefan Schmitt, Anthony Carter, Hannah Michealraj, Kulandaimanuvel Antony Kumar, Sachin A Taylor, Michael D Rich, Jeremy Mesirov, Jill Pfister, Stefan P Ay, Ferhat Dixon, Jesse Kool, Marcel Chavez, Lukas |
author_sort | Okonechnikov, Konstantin |
collection | PubMed |
description | Ependymoma (EPN) is an aggressive pediatric tumor that occurs throughout the central nervous system. The two most aggressive molecular subgroups of EPN are the supratentorial ZFTA-fusion associated group (ST-EPN-ZFTA) and the posterior fossa group A (PF-EPN-A). Although the molecular characteristics underlying the tumorigenesis of these subgroups have been extensively studied, these tumors remain difficult to treat. Hence, innovative therapeutic approaches are urgently needed. Here, we used genome-wide chromosome conformation capture (Hi-C), complemented with CTCF (insulators) and H3K27ac (active enhancers) ChIP-seq, as well as gene expression and whole-genome DNA methylation profiling in primary and relapsed EPN tumors and cell lines, to identify chromosomal rearrangements and regulatory mechanisms underlying aberrant expression of genes that are essential for EPN tumorigenesis. By integrating these heterogenous data types, we have observed the formation of new topologically associated domains (‘neo-TADs’) caused by intra- and inter-chromosomal structural variants in both tumors. In addition, we observed 3D chromatin complexes of regulatory elements, and the replacement of CTCF insulators by DNA hyper-methylation in PF-EPN-A tumors. These tumor-specific 3D genome conformations can be associated with the transcriptional upregulation of nearby genes. Through inhibition experiments we validated that these newly identified genes, including RCOR2, ITGA6, LAMC1, and ARL4C, are highly essential for the survival of patient-derived EPN cell lines in a disease subgroup-specific manner. Thus, our study identifies novel potential therapeutic vulnerabilities in EPN and extends our ability to reveal tumor-dependency genes and pathways by oncogenic 3D genome conformations even in tumors that lack known genetic alterations. |
format | Online Article Text |
id | pubmed-9165136 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-91651362022-06-05 EPEN-18. Oncogenic 3D genome conformations identify novel therapeutic targets in ependymoma Okonechnikov, Konstantin Camgöz, Aylin Park, Donglim Esther Chapman, Owen Hübner, Jens-Martin Jenseit, Anne Chakraborty, Abhijit Pagadala, Meghana Bump, Rosalind Chandran, Sahaana Kraft, Katherina Hidalgo, Rocio Acuna Reid, Derek Juarez, Edwin F Robinson, James T Pajtler, Kristian W Milde, Till Coufal, Nicole Levy, Michael Malicki, Denise Nahas, Shareef Snuderl, Matija Crawford, John Wechsler-Reya, Robert Mundlos, Stefan Schmitt, Anthony Carter, Hannah Michealraj, Kulandaimanuvel Antony Kumar, Sachin A Taylor, Michael D Rich, Jeremy Mesirov, Jill Pfister, Stefan P Ay, Ferhat Dixon, Jesse Kool, Marcel Chavez, Lukas Neuro Oncol Ependymoma Ependymoma (EPN) is an aggressive pediatric tumor that occurs throughout the central nervous system. The two most aggressive molecular subgroups of EPN are the supratentorial ZFTA-fusion associated group (ST-EPN-ZFTA) and the posterior fossa group A (PF-EPN-A). Although the molecular characteristics underlying the tumorigenesis of these subgroups have been extensively studied, these tumors remain difficult to treat. Hence, innovative therapeutic approaches are urgently needed. Here, we used genome-wide chromosome conformation capture (Hi-C), complemented with CTCF (insulators) and H3K27ac (active enhancers) ChIP-seq, as well as gene expression and whole-genome DNA methylation profiling in primary and relapsed EPN tumors and cell lines, to identify chromosomal rearrangements and regulatory mechanisms underlying aberrant expression of genes that are essential for EPN tumorigenesis. By integrating these heterogenous data types, we have observed the formation of new topologically associated domains (‘neo-TADs’) caused by intra- and inter-chromosomal structural variants in both tumors. In addition, we observed 3D chromatin complexes of regulatory elements, and the replacement of CTCF insulators by DNA hyper-methylation in PF-EPN-A tumors. These tumor-specific 3D genome conformations can be associated with the transcriptional upregulation of nearby genes. Through inhibition experiments we validated that these newly identified genes, including RCOR2, ITGA6, LAMC1, and ARL4C, are highly essential for the survival of patient-derived EPN cell lines in a disease subgroup-specific manner. Thus, our study identifies novel potential therapeutic vulnerabilities in EPN and extends our ability to reveal tumor-dependency genes and pathways by oncogenic 3D genome conformations even in tumors that lack known genetic alterations. Oxford University Press 2022-06-03 /pmc/articles/PMC9165136/ http://dx.doi.org/10.1093/neuonc/noac079.155 Text en © The Author(s) 2022. 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 | Ependymoma Okonechnikov, Konstantin Camgöz, Aylin Park, Donglim Esther Chapman, Owen Hübner, Jens-Martin Jenseit, Anne Chakraborty, Abhijit Pagadala, Meghana Bump, Rosalind Chandran, Sahaana Kraft, Katherina Hidalgo, Rocio Acuna Reid, Derek Juarez, Edwin F Robinson, James T Pajtler, Kristian W Milde, Till Coufal, Nicole Levy, Michael Malicki, Denise Nahas, Shareef Snuderl, Matija Crawford, John Wechsler-Reya, Robert Mundlos, Stefan Schmitt, Anthony Carter, Hannah Michealraj, Kulandaimanuvel Antony Kumar, Sachin A Taylor, Michael D Rich, Jeremy Mesirov, Jill Pfister, Stefan P Ay, Ferhat Dixon, Jesse Kool, Marcel Chavez, Lukas EPEN-18. Oncogenic 3D genome conformations identify novel therapeutic targets in ependymoma |
title | EPEN-18. Oncogenic 3D genome conformations identify novel therapeutic targets in ependymoma |
title_full | EPEN-18. Oncogenic 3D genome conformations identify novel therapeutic targets in ependymoma |
title_fullStr | EPEN-18. Oncogenic 3D genome conformations identify novel therapeutic targets in ependymoma |
title_full_unstemmed | EPEN-18. Oncogenic 3D genome conformations identify novel therapeutic targets in ependymoma |
title_short | EPEN-18. Oncogenic 3D genome conformations identify novel therapeutic targets in ependymoma |
title_sort | epen-18. oncogenic 3d genome conformations identify novel therapeutic targets in ependymoma |
topic | Ependymoma |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9165136/ http://dx.doi.org/10.1093/neuonc/noac079.155 |
work_keys_str_mv | AT okonechnikovkonstantin epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT camgozaylin epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT parkdonglimesther epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT chapmanowen epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT hubnerjensmartin epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT jenseitanne epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT chakrabortyabhijit epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT pagadalameghana epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT bumprosalind epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT chandransahaana epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT kraftkatherina epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT hidalgorocioacuna epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT reidderek epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT juarezedwinf epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT robinsonjamest epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT pajtlerkristianw epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT mildetill epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT coufalnicole epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT levymichael epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT malickidenise epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT nahasshareef epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT snuderlmatija epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT crawfordjohn epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT wechslerreyarobert epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT mundlosstefan epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT schmittanthony epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT carterhannah epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT michealrajkulandaimanuvelantony epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT kumarsachina epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT taylormichaeld epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT richjeremy epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT mesirovjill epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT pfisterstefanp epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT ayferhat epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT dixonjesse epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT koolmarcel epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma AT chavezlukas epen18oncogenic3dgenomeconformationsidentifynoveltherapeutictargetsinependymoma |