DNA Hypomethylation and Histone Variant macroH2A1 Synergistically Attenuate Chemotherapy-Induced Senescence to Promote Hepatocellular Carcinoma Progression

Michela Borghesan, Caterina Fusilli, Francesca Rappa, Concetta Panebianco, Giovanni Rizzo, Jude A. Oben, Gianluigi Mazzoccoli, Chris Faulkes, Illar Pata, Antonella Agodi, Farhad Rezaee, Shane Minogue, Alessandra Warren, Abigail Peterson, John M. Sedivy, Julien Douet, Marcus Buschbeck, Francesco Cappello, Tommaso Mazza, Valerio PazienzaManlio Vinciguerra*

*Corresponding author for this work

    Research output: Contribution to journalArticleAcademicpeer-review

    74 Citations (Scopus)

    Abstract

    Aging is a major risk factor for progression of liver diseases to hepatocellular carcinoma (HCC). Cellular senescence contributes to age-related tissue dysfunction, but the epigenetic basis underlying drug-induced senescence remains unclear. macroH2A1, a variant of histone H2A, is a marker of senescence-associated heterochromatic foci that synergizes with DNA methylation to silence tumor-suppressor genes in human fibroblasts. In this study, we investigated the relationship between macroH2A1 splice variants, macroH2A1.1 and macroH2A1.2, and liver carcinogenesis. We found that protein levels of both macroH2A1 isoforms were increased in the livers of very elderly rodents and humans, and were robust immunohistochemical markers of human cirrhosis and HCC. In response to the chemotherapeutic and DNA-demethylating agent 5-aza-deoxycytidine (5-aza-dC), transgenic expression of macroH2A1 isoforms in HCC cell lines prevented the emergence of a senescent-like phenotype and induced synergistic global DNA hypomethylation. Conversely, macroH2A1 depletion amplified the antiproliferative effects of 5-aza-dC in HCC cells, but failed to enhance senescence. Senescence-associated secretory phenotype and whole-transcriptome analyses implicated the p38 MAPK/IL8 pathway in mediating macroH2A1-dependent escape of HCC cells from chemotherapy-induced senescence. Furthermore, chromatin immunoprecipitation sequencing revealed that this hepatic antisenescence state also required active transcription that could not be attributed to genomic occupancy of these histones. Collectively, our findings reveal a new mechanism by which drug-induced senescence is epigenetically regulated by macroH2A1 and DNA methylation and suggest macroH2A1 as a novel biomarker of hepatic senescence that could potentially predict prognosis and disease progression. (C) 2016 AACR.

    Original languageEnglish
    Pages (from-to)594-606
    Number of pages13
    JournalCancer Research
    Volume76
    Issue number3
    DOIs
    Publication statusPublished - 1-Feb-2016

    Keywords

    • HCV CORE PROTEIN
    • SECRETORY PHENOTYPE
    • STEM-CELLS
    • CANCER
    • LIVER
    • MICE
    • METHYLATION
    • EXPRESSION
    • CHROMATIN
    • 5-AZA-2'-DEOXYCYTIDINE

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