Distinct epigenetic landscapes underlie the pathobiology of pancreatic cancer subtypes

Recent studies have offered ample insight into genome-wide expression patterns to define pancreatic ductal adenocarcinoma (PDAC) subtypes, although there remains a lack of knowledge regarding the underlying epigenomics of PDAC. Here we perform multi-parametric integrative analyses of chromatin immun...

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Veröffentlicht in:Nature communications 2018-05, Vol.9 (1), p.1978-10, Article 1978
Hauptverfasser: Lomberk, Gwen, Blum, Yuna, Nicolle, Rémy, Nair, Asha, Gaonkar, Krutika Satish, Marisa, Laetitia, Mathison, Angela, Sun, Zhifu, Yan, Huihuang, Elarouci, Nabila, Armenoult, Lucile, Ayadi, Mira, Ordog, Tamas, Lee, Jeong-Heon, Oliver, Gavin, Klee, Eric, Moutardier, Vincent, Gayet, Odile, Bian, Benjamin, Duconseil, Pauline, Gilabert, Marine, Bigonnet, Martin, Garcia, Stephane, Turrini, Olivier, Delpero, Jean-Robert, Giovannini, Marc, Grandval, Philippe, Gasmi, Mohamed, Secq, Veronique, De Reyniès, Aurélien, Dusetti, Nelson, Iovanna, Juan, Urrutia, Raul
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Sprache:eng
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Zusammenfassung:Recent studies have offered ample insight into genome-wide expression patterns to define pancreatic ductal adenocarcinoma (PDAC) subtypes, although there remains a lack of knowledge regarding the underlying epigenomics of PDAC. Here we perform multi-parametric integrative analyses of chromatin immunoprecipitation-sequencing (ChIP-seq) on multiple histone modifications, RNA-sequencing (RNA-seq), and DNA methylation to define epigenomic landscapes for PDAC subtypes, which can predict their relative aggressiveness and survival. Moreover, we describe the state of promoters, enhancers, super-enhancers, euchromatic, and heterochromatic regions for each subtype. Further analyses indicate that the distinct epigenomic landscapes are regulated by different membrane-to-nucleus pathways. Inactivation of a basal-specific super-enhancer associated pathway reveals the existence of plasticity between subtypes. Thus, our study provides new insight into the epigenetic landscapes associated with the heterogeneity of PDAC, thereby increasing our mechanistic understanding of this disease, as well as offering potential new markers and therapeutic targets. Pancreatic ductal adenocarcinoma (PDAC) is a complex disease and its underlying epigenomic heterogeneity is not fully understood. Here, the authors utilize patient-derived PDAC xenografts to define the epigenomic landscape of PDAC, highlighting chromatin states linked to differing disease aggressiveness and survival.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-018-04383-6