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Targeting AURKA to induce synthetic lethality in CREBBP-deficient B-cell malignancies via attenuation of MYC expression

  • Yichen Sun,
  • Jianfeng Chen,
  • Jing Han Hong,
  • Rong Xiao,
  • Yan Teng,
  • Peili Wang,
  • Peng Deng,
  • Zhaoliang Yu,
  • Jason Yongsheng Chan,
  • Kelila Xin Ye Chai,
  • Jiuping Gao,
  • Yali Wang,
  • Lu Pan,
  • Lizhen Liu,
  • Shini Liu,
  • Bin Tean Teh,
  • Qiang Yu,
  • Soon Thye Lim,
  • Wenyu Li,
  • Banglao Xu,
  • Choon Kiat Ong,
  • Jing Tan

摘要

Loss-of-function mutations in CREBBP, which encodes for a histone acetyltransferase, occur frequently in B-cell malignancies, highlighting CREBBP deficiency as an attractive therapeutic target. Using established isogenic cell models, we demonstrated that CREBBP-deficient cells are selectively vulnerable to AURKA inhibition. Mechanistically, we found that co-targeting CREBBP and AURKA suppressed MYC transcriptionally and post-translationally to induce replication stress and apoptosis. Inhibition of AURKA dramatically decreased MYC protein level in CREBBP-deficient cells, implying a dependency on AURKA to sustain MYC stability. Furthermore, in vivo studies showed that pharmacological inhibition of AURKA was efficacious in delaying tumor progression in CREBBP-deficient cells and was synergistic with CREBBP inhibitors in CREBBP-proficient cells. Our study sheds light on a novel synthetic lethal interaction between CREBBP and AURKA, indicating that targeting AURKA represents a potential therapeutic strategy for high-risk B-cell malignancies harboring CREBBP inactivating mutations.