Chromatin topology reorganization and transcription repression by PML-RARα in acute promyeloid leukemia.

  • Wang, Ping
  • Tang, Zhonghui
  • Lee, Byoungkoo
  • Zhu, Jacqueline Jufen
  • Cai, Liuyang
  • Szalaj, Przemyslaw
  • Tian, Simon Zhongyuan
  • Zheng, Meizhen
  • Plewczynski, Dariusz
  • Ruan, Xiaoan
  • Liu, Edison T
  • Wei, Chia-Lin
  • Ruan, Yijun
Publication date
May 2020
Publisher
The Mouseion at the JAXlibrary
Language
English

Abstract

BACKGROUND: Acute promyeloid leukemia (APL) is characterized by the oncogenic fusion protein PML-RARα, a major etiological agent in APL. However, the molecular mechanisms underlying the role of PML-RARα in leukemogenesis remain largely unknown. RESULTS: Using an inducible system, we comprehensively analyze the 3D genome organization in myeloid cells and its reorganization after PML-RARα induction and perform additional analyses in patient-derived APL cells with native PML-RARα. We discover that PML-RARα mediates extensive chromatin interactions genome-wide. Globally, it redefines the chromatin topology of the myeloid genome toward a more condensed configuration in APL cells; locally, it intrudes RNAPII-associated interaction domains, interr...

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