Back to Search Start Over

Single-cell multimodal glioma analyses identify epigenetic regulators of cellular plasticity and environmental stress response

Authors :
Rahul Maurya
Hoon Kim
Sunit Das
Amit D. Gujar
Philip C. De Witt Hamer
Elise T. Courtois
Chew Yee Ngan
Kevin J. Anderson
Floris P. Barthel
Niels Verburg
Kevin C. Johnson
Dacheng Zhao
Ketan R. Bulsara
Martine Seignon
Paul Robson
Frederick S. Varn
Eun Hee Yi
Nicholas Navin
Marcos R. Estecio
Diane Luo
Roel G.W. Verhaak
Michael Samuels
Ming Tang
Neurosurgery
Amsterdam Neuroscience - Systems & Network Neuroscience
CCA - Cancer biology and immunology
Source :
Johnson, K C, Anderson, K J, Courtois, E T, Gujar, A D, Barthel, F P, Varn, F S, Luo, D, Seignon, M, Yi, E, Kim, H, Estecio, M R H, Zhao, D, Tang, M, Navin, N E, Maurya, R, Ngan, C Y, Verburg, N, de Witt Hamer, P C, Bulsara, K, Samuels, M L, Das, S, Robson, P & Verhaak, R G W 2021, ' Single-cell multimodal glioma analyses identify epigenetic regulators of cellular plasticity and environmental stress response ', Nature Genetics, vol. 53, no. 10, pp. 1456-1468 . https://doi.org/10.1038/s41588-021-00926-8, Nature Genetics, 53(10), 1456-1468. Nature Publishing Group
Publication Year :
2021

Abstract

Glioma intratumoral heterogeneity enables adaptation to challenging microenvironments and contributes to therapeutic resistance. We integrated 914 single-cell DNA methylomes, 55,284 single-cell transcriptomes and bulk multi-omic profiles across 11 adult IDH mutant or IDH wild-type gliomas to delineate sources of intratumoral heterogeneity. We showed that local DNA methylation disorder is associated with cell–cell DNA methylation differences, is elevated in more aggressive tumors, links with transcriptional disruption and is altered during the environmental stress response. Glioma cells under in vitro hypoxic and irradiation stress increased local DNA methylation disorder and shifted cell states. We identified a positive association between genetic and epigenetic instability that was supported in bulk longitudinally collected DNA methylation data. Increased DNA methylation disorder associated with accelerated disease progression and recurrently selected DNA methylation changes were enriched for environmental stress response pathways. Our work identified an epigenetically facilitated adaptive stress response process and highlights the importance of epigenetic heterogeneity in shaping therapeutic outcomes.

Details

Language :
English
ISSN :
10614036
Database :
OpenAIRE
Journal :
Johnson, K C, Anderson, K J, Courtois, E T, Gujar, A D, Barthel, F P, Varn, F S, Luo, D, Seignon, M, Yi, E, Kim, H, Estecio, M R H, Zhao, D, Tang, M, Navin, N E, Maurya, R, Ngan, C Y, Verburg, N, de Witt Hamer, P C, Bulsara, K, Samuels, M L, Das, S, Robson, P & Verhaak, R G W 2021, ' Single-cell multimodal glioma analyses identify epigenetic regulators of cellular plasticity and environmental stress response ', Nature Genetics, vol. 53, no. 10, pp. 1456-1468 . https://doi.org/10.1038/s41588-021-00926-8, Nature Genetics, 53(10), 1456-1468. Nature Publishing Group
Accession number :
edsair.doi.dedup.....aad1ae7e79d3ae7c7008a19eba37ea4d
Full Text :
https://doi.org/10.1038/s41588-021-00926-8