4.8 Article

Retinoic acid rewires the adrenergic core regulatory circuitry of childhood neuroblastoma

Journal

SCIENCE ADVANCES
Volume 7, Issue 43, Pages -

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.abe0834

Keywords

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Funding

  1. NIH [R35CA210064, R01CA216391, K08CA245251]
  2. St. Jude Children's Research Hospital Collaborative Research Consortium on Chromatin Regulation in Pediatric Cancer
  3. Alex's Lemonade Stand Foundation
  4. Charles A. King Trust
  5. Claudia Adams Barr Foundation
  6. CureSearch for Children's Cancer
  7. Damon Runyon-Sohn Foundation
  8. German Cancer Aid within the Mildred-Scheel-Postdoctoral program of the Mildred Scheel Foundation
  9. American Lebanese Syrian Associated Charities (ALSAC)

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Retinoids can reprogram enhancer landscape to down-regulate MYCN expression and establish a new retino-sympathetic CRC, causing proliferative arrest and inducing differentiation.
Neuroblastoma cell identity depends on a core regulatory circuit (CRC) of transcription factors that collaborate with MYCN to drive the oncogenic gene expression program. For neuroblastomas dependent on the adrenergic CRC, treatment with retinoids can inhibit cell growth and induce differentiation. Here, we show that when MYCN-amplified neuroblastoma cells are treated with retinoic acid, histone H3K27 acetylation and methylation become redistributed to decommission super-enhancers driving the expression of PHOX2B and GATA3, together with the activation of new super-enhancers that drive high levels of MEIS1 and SOX4 expression. These findings indicate that treatment with retinoids can reprogram the enhancer landscape, resulting in down-regulation of MYCN expression, while establishing a new retino-sympathetic CRC that causes proliferative arrest and sympathetic differentiation. Thus, we provide mechanisms that account for the beneficial effects of retinoids in high-risk neuroblastoma and explain the rapid down-regulation of expression of MYCN despite massive levels of amplification of this gene.

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