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Data from Aggressive PDACs Show Hypomethylation of Repetitive Elements and the Execution of an Intrinsic IFN Program Linked to a Ductal Cell of Origin

Authors :
Andreas Trumpp
Martin R. Sprick
Wilko Weichert
Oliver Strobel
Janel L. Kopp
Ilse Rooman
H. Efsun Arda
Dieter Weichenhan
Katja Steiger
Benedikt Brors
Christoph Plass
Thilo Hackert
Nicole Pfarr
Matthias Schlesner
Roland Eils
Hsi-Yu Yen
Elisa Donato
Manuel Rodríguez-Paredes
Matthias M. Gaida
Soheila Zarei
Elyne Backx
Alex Y.L. Lee
Karnjit Sarai
Alexander Muckenhuber
Steffi O. Kossi
Vera Thiel
Manuel Reitberger
Jacob Insua-Rodríguez
Mattia Falcone
Vanessa Vogel
Corinna Klein
Silke Weisenburger
Mariam Safavi
Magdalena Büscher
Nathalia A. Giese
Charles D. Imbusch
Zuguang Gu
Elisa Espinet
Publication Year :
2023
Publisher :
American Association for Cancer Research (AACR), 2023.

Abstract

Pancreatic ductal adenocarcinoma (PDAC) is characterized by extensive desmoplasia, which challenges the molecular analyses of bulk tumor samples. Here we FACS-purified epithelial cells from human PDAC and normal pancreas and derived their genome-wide transcriptome and DNA methylome landscapes. Clustering based on DNA methylation revealed two distinct PDAC groups displaying different methylation patterns at regions encoding repeat elements. Methylationlow tumors are characterized by higher expression of endogenous retroviral transcripts and double-stranded RNA sensors, which lead to a cell-intrinsic activation of an interferon signature (IFNsign). This results in a protumorigenic microenvironment and poor patient outcome. Methylationlow/IFNsignhigh and Methylationhigh/IFNsignlow PDAC cells preserve lineage traits, respective of normal ductal or acinar pancreatic cells. Moreover, ductal-derived KrasG12D/Trp53−/− mouse PDACs show higher expression of IFNsign compared with acinar-derived counterparts. Collectively, our data point to two different origins and etiologies of human PDACs, with the aggressive Methylationlow/IFNsignhigh subtype potentially targetable by agents blocking intrinsic IFN signaling.Significance:The mutational landscapes of PDAC alone cannot explain the observed interpatient heterogeneity. We identified two PDAC subtypes characterized by differential DNA methylation, preserving traits from normal ductal/acinar cells associated with IFN signaling. Our work suggests that epigenetic traits and the cell of origin contribute to PDAC heterogeneity.This article is highlighted in the In This Issue feature, p. 521

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....17ff5ab73e90d65d7b26c0856dff1192
Full Text :
https://doi.org/10.1158/2159-8290.c.6548059.v1