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The potential of epigenetic therapy to target the 3D epigenome in endocrine-resistant breast cancer

  • Joanna Achinger-Kawecka,
  • Clare Stirzaker,
  • Neil Portman,
  • Elyssa Campbell,
  • Kee-Ming Chia,
  • Qian Du,
  • Geraldine Laven-Law,
  • Shalima S. Nair,
  • Aliza Yong,
  • Ashleigh Wilkinson,
  • Samuel Clifton,
  • Heloisa H. Milioli,
  • Sarah Alexandrou,
  • C. Elizabeth Caldon,
  • Jenny Song,
  • Amanda Khoury,
  • Braydon Meyer,
  • Wenhan Chen,
  • Ruth Pidsley,
  • Wenjia Qu,
  • Julia M. W. Gee,
  • Anthony Schmitt,
  • Emily S. Wong,
  • Theresa E. Hickey,
  • Elgene Lim,
  • Susan J. Clark

摘要

Three-dimensional (3D) epigenome remodeling is an important mechanism of gene deregulation in cancer. However, its potential as a target to counteract therapy resistance remains largely unaddressed. Here, we show that epigenetic therapy with decitabine (5-Aza-mC) suppresses tumor growth in xenograft models of pre-clinical metastatic estrogen receptor positive (ER+) breast tumor. Decitabine-induced genome-wide DNA hypomethylation results in large-scale 3D epigenome deregulation, including de-compaction of higher-order chromatin structure and loss of boundary insulation of topologically associated domains. Significant DNA hypomethylation associates with ectopic activation of ER-enhancers, gain in ER binding, creation of new 3D enhancer–promoter interactions and concordant up-regulation of ER-mediated transcription pathways. Importantly, long-term withdrawal of epigenetic therapy partially restores methylation at ER-enhancer elements, resulting in a loss of ectopic 3D enhancer–promoter interactions and associated gene repression. Our study illustrates the potential of epigenetic therapy to target ER+ endocrine-resistant breast cancer by DNA methylation-dependent rewiring of 3D chromatin interactions, which are associated with the suppression of tumor growth.