4.8 Article

MYC Interacts with the G9a Histone Methyltransferase to Drive Transcriptional Repression and Tumorigenesis

期刊

CANCER CELL
卷 34, 期 4, 页码 579-+

出版社

CELL PRESS
DOI: 10.1016/j.ccell.2018.09.001

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资金

  1. Canadian Institutes of Health Research [MOP123289, MOP275788]
  2. Terry Fox Research Institute New Frontiers Program Project
  3. Canadian Breast Cancer Research Doctoral Fellowship
  4. Princess Margaret Cancer Centre Knudson Postdoctoral Fellowships
  5. Ontario Institute for Cancer Research
  6. Terry Fox Research Institute New Investigator Award
  7. CIHR New Investigator Award
  8. AbbVie
  9. Bayer Pharma AG
  10. Boehringer Ingelheim
  11. Canada Foundation for Innovation, Eshelman Institute for Innovation, Genome Canada through Ontario Genomics Institute [OGI-055]
  12. Innovative Medicines Initiative (EU/EFPIA) [ULTRA-DD-115766]
  13. Janssen
  14. Merck
  15. Novartis Pharma AG
  16. Ontario Ministry of Research, Innovation and Science (MRIS)
  17. Pfizer
  18. Sao Paulo Research Foundation-FAPESP
  19. Takeda
  20. Wellcome Trust

向作者/读者索取更多资源

MYC is an oncogenic driver that regulates transcriptional activation and repression. Surprisingly, mechanisms by which MYC promotes malignant transformation remain unclear. We demonstrate that MYC interacts with the G9a H3K9-methyltransferase complex to control transcriptional repression. Inhibiting G9a hinders MYC chromatin binding at MYC-repressed genes and de-represses gene expression. By identifying the MYC box II region as essential for MYC-G9a interaction, a long-standing missing link between MYC transformation and gene repression is unveiled. Across breast cancer cell lines, the anti-proliferative response to G9a pharmacological inhibition correlates with MYC sensitivity and gene signatures. Consistently, genetically depleting G9a in vivo suppresses MYC-dependent tumor growth. These findings unveil G9a as an epigenetic regulator of MYC transcriptional repression and a therapeutic vulnerability in MYC-driven cancers.

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