Together, these data uncover enhancer heterogeneity in pan-cancer systems with identification of a novel enhancer-based subtype and identify potential new therapeutic targets associated with unique epigenetic features.
Abstract
Epigenetic aberrations are a hallmark of cancer; however, systematic chromatin state maps of cancer cells are unavailable. We generated and analyzed 803 histone mark profiles in 142 cancer cell lines and 114 human tumors belonging to 9 solid tumor types. Irrespective of their cell-of-origin, cancer cells segregate from normal tissues based on their enhancer patterns, suggesting enhancer deregulation is a fundamental epigenetic feature in cancer. Enhancer based clustering defined 5 distinct subgroups of cancer cells (EpiC1-5) with unique developmental trajectories, molecular features and dependencies. Importantly, we define a set of core TFs that are critical for EpiC-specific enhancer patterns and survival. Notably, EpiC4 represented a predominantly epigenetic, pan-cancer subtype that displays poor survival, activation and dependence on a FN1-CAV1-SRC-PI3K-AKT signaling network. Together, these data uncover enhancer heterogeneity in pan-cancer systems with identification of a novel enhancer-based subtype and identify potential new therapeutic targets associated with unique epigenetic features.
Pancreatic ductal adenocarcinoma (PDAC) disease progression involves complex cell state transitions in both malignant and non-malignant populations within the tumor microenvironment. To uncover PDAC cell states and epigenetic features associated with clinical outcome, we profiled 40 tumor samples (33 primary tumors a...
Kevin Hawthorne, Motoyuki Tsuda, Jenny Eng et al.· Cancer Research· 0 citations
Colorectal cancer (CRC) exhibits remarkable phenotypic heterogeneity that cannot be fully explained by genetic alterations alone. Advances in single-nucleus assay for transposase-accessible chromatin sequencing have revealed chromatin accessibility as a central regulatory layer shaping tumor identity, cellular plastici...
A unified, multi-cohort transcriptional landscape of breast cancer that organizes canonical subtypes along continuous biological axes and reveals spatially structured regions of therapeutic sensitivity and resistance is presented.
Sonali Arora, Ramya Suresh, N. Holland et al.· bioRxiv· 0 citations
Migratory selection was accompanied by extensive transcriptional change within each model, yet across five models spanning three tissue types these changes converged on shared biological processes rather than shared genes.
I. Ortiz, Paul V. Taufalele, Victor L. Dunagan et al.· Genes· 0 citations
DNA methylation deregulation is an essential feature of tumor biology, influencing cancer formation and pathogenesis. Analyses of DNA methylation in bulk cancer specimens are challenging due to the high data dimensionality, noise, and mixture of different cell types. Here, we characterized methylation dynamics in cance...
Iñaki Sasiain, D. F. Nacer, M. Jönsson et al.· npj Breast Cancer· 1 citation
Consensus molecular subtype 4 (CMS4) colorectal cancer (CRC) is associated with an aggressive clinical course and poor survival, yet the biological basis of heterogeneity within this subtype remains incompletely understood. DNA methylation is an epigenetic mechanism involved in transcriptional regulation, cellular diff...
Kai-Yuan Xing, Liang-Shuang Li, Shuang Feng et al.· International Journal of Mol...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.