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Histone demethylase KDM6B has an anti-tumorigenic function in neuroblastoma by promoting differentiation.
Yang, Liqun; Zha, Yunhong; Ding, Jane; Ye, Bingwei; Liu, Mengling; Yan, Chunhong; Dong, Zheng; Cui, Hongjuan; Ding, Han-Fei.
Afiliação
  • Yang L; State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing, 400716, China.
  • Zha Y; Institute of Neural Regeneration and Repair and Department of Neurology, The First Hospital of Yichang, Three Gorges University College of Medicine, Yichang, 443000, China.
  • Ding J; Georgia Cancer Center, Augusta University, Augusta, GA, 30912, USA.
  • Ye B; Georgia Cancer Center, Augusta University, Augusta, GA, 30912, USA.
  • Liu M; Institute of Neural Regeneration and Repair and Department of Neurology, The First Hospital of Yichang, Three Gorges University College of Medicine, Yichang, 443000, China.
  • Yan C; Georgia Cancer Center, Augusta University, Augusta, GA, 30912, USA.
  • Dong Z; Department of Biochemistry and Molecular, Medical College of Georgia, Augusta University, Augusta, GA, 30912, USA.
  • Cui H; Department of Cell Biology and Anatomy, Medical College of Georgia, Augusta University, Augusta, GA, 30912, USA.
  • Ding HF; Charlie Norwood VA Medical Center, Augusta, GA, 30904, USA.
Oncogenesis ; 8(1): 3, 2019 Jan 04.
Article em En | MEDLINE | ID: mdl-30631055
ABSTRACT
Induction of differentiation is a therapeutic strategy in high-risk neuroblastoma, a childhood cancer of the sympathetic nervous system. Neuroblastoma differentiation requires transcriptional upregulation of neuronal genes. How this process is regulated at epigenetic levels is not well understood. Here we report that the histone H3 lysine 27 demethylase KDM6B is an epigenetic activator of neuroblastoma cell differentiation. KDM6B mRNA expression is downregulated in poorly differentiated high-risk neuroblastomas and upregulated in differentiated tumors, and high KDM6B expression is prognostic for better survival in neuroblastoma patients. In neuroblastoma cell lines, KDM6B depletion promotes cell proliferation, whereas KDM6B overexpression induces neuronal differentiation and inhibits cell proliferation and tumorgenicity. Mechanistically, KDM6B epigenetically activates the transcription of neuronal genes by removing the repressive chromatin marker histone H3 lysine 27 trimethylation. In addition, we show that KDM6B functions downstream of the retinoic acid-HOXC9 axis in inducing neuroblastoma cell differentiation KDM6B expression is upregulated by retinoic acid via HOXC9, and KDM6B is required for HOXC9-induced neuroblastoma cell differentiation. Finally, we present evidence that KDM6B interacts with HOXC9 to target neuronal genes for epigenetic activation. These findings identify a KDM6B-dependent epigenetic mechanism in the control of neuroblastoma cell differentiation, providing a rationale for reducing histone H3 lysine 27 trimethylation as a strategy for enhancing differentiation-based therapy in high-risk neuroblastoma.

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2019 Tipo de documento: Article