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KDM6B promotes activation of the oncogenic CDK4/6-pRB-E2F pathway by maintaining enhancer activity in MYCN-amplified neuroblastoma.

Alexandra D'OtoJie FangHongjian JinBei-Si XuShivendra SinghAnoushka MullasserilVictoria JonesAhmed Abu-ZaidXinyu von ButtlarBailey CookeDongli HuJason ShohetAndrew Jackson MurphyAndrew M DavidoffJun J Yang
Published in: Nature communications (2021)
The H3K27me2/me3 histone demethylase KDM6B is essential to neuroblastoma cell survival. However, the mechanism of KDM6B action remains poorly defined. We demonstrate that inhibition of KDM6B activity 1) reduces the chromatin accessibility of E2F target genes and MYCN, 2) selectively leads to an increase of H3K27me3 but a decrease of the enhancer mark H3K4me1 at the CTCF and BORIS binding sites, which may, consequently, disrupt the long-range chromatin interaction of MYCN and E2F target genes, and 3) phenocopies the transcriptome induced by the specific CDK4/6 inhibitor palbociclib. Overexpression of CDK4/6 or Rb1 knockout confers neuroblastoma cell resistance to both palbociclib and the KDM6 inhibitor GSK-J4. These data indicate that KDM6B promotes an oncogenic CDK4/6-pRB-E2F pathway in neuroblastoma cells via H3K27me3-dependent enhancer-promoter interactions, providing a rationale to target KDM6B for high-risk neuroblastoma.
Keyphrases
  • transcription factor
  • genome wide
  • cell cycle
  • gene expression
  • dna methylation
  • genome wide identification
  • dna damage
  • stem cells
  • induced apoptosis
  • clinical trial
  • oxidative stress
  • cell cycle arrest
  • data analysis