Inhibition of USP7 destabilizes the noncanonical PRC1.1 complex and induces neuroblastoma differentiation

  • Mol Cancer Res. 2026 Mar 19:10.1158/1541-7786.MCR-25-1153. doi: 10.1158/1541-7786.MCR-25-1153.
Emily A Cmarik  1 Abhishek Wahi  1 Sayali S Chandekar  1 Solomon K Otchere  2 Jennifer E Sturgis  1 Silvi Salhotra  3 Allen T Basanthakumar  3 Nehemiah X Boyd  2 Giulia DiGiovanni  4 He Zhu  5 Gabriela Alexe  6 Daniel A Schaefer  7 Xing Liu  8 Jarrod A Marto  9 Sara J Buhrlage  10 Kimberly Stegmaier  6 Nathaniel W Mabe  11
Affiliations
  • 1. Purdue University West Lafayette United States.
  • 2. Purdue University West Lafayette West Lafayette, Indiana United States.
  • 3. Dana-Farber Cancer Institute Boston United States.
  • 4. Dana-Farber Cancer Institute United States.
  • 5. University of Virginia Charlottesville, Virginia United States.
  • 6. Dana-Farber Cancer Institute Boston, MA United States.
  • 7. Massachusetts General Hospital United States.
  • 8. Purdue University West Lafayette West Lafayette United States.
  • 9. University of Virginia Charlottesville, VA United States.
  • 10. Dana-Farber Cancer Institute Boston, Massachusetts United States.
  • 11. Purdue University West Lafayette West Lafayette, IN United States.
Abstract

Pediatric cancers are frequently driven by genomic alterations that result in impaired differentiation during development. To identify complex-level dependencies required for differentiation in neuroblastoma, a pediatric Cancer of the developing peripheral nervous system, we curated a list of protein complexes using the CORUM database and mined the Dependency Map (DepMap) using gene set enrichment analysis. This analysis identified the non-canonical PRC1.1 complex, which represses transcriptional activity through ubiquitination of histone 2A, lysine 119 (H2AK119Ub), as a selectively enriched dependency in neuroblastoma. Knockout of PRC1.1 subunits reduced neuroblastoma growth by inducing a neuronal differentiation program. While no known direct inhibitors of PRC1.1 exist, co-dependency analysis identified that the Deubiquitinase USP7 strongly correlated with PRC1.1 dependency. Treatment with XL177A, a small molecule inhibitor of USP7, significantly reduced neuroblastoma growth in both cellular and animal models. Integrated RNA- and ChIP-sequencing showed that both PRC1.1 knockout and USP7 inhibition resulted in highly correlated transcriptional alterations and reduced H2AK119Ub deposition on chromatin, suggesting that USP7 inhibition reduced neuroblastoma growth through a PRC1.1-dependent mechanism. Mechanistically, global proteomics and ubiquitinomics revealed that USP7 inhibition disrupted non-canonical PRC1 complex assembly, resulting in destabilization of PRC1.1 and subsequent proteolysis. Our findings expand our understanding of the chromatin complexes required to maintain a de-differentiated state in neuroblastoma and suggest the therapeutic potential for USP7 inhibitors in the treatment of this disease. Implications: Our study reveals the potential for utilizing USP7 inhibitors to target epigenetic repression of differentiation programs in neuroblastoma by reducing PRC1 activity.

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