Deficiency of BAP1 inhibits neuroblastoma tumorigenesis through destabilization of MYCN

Xiaoling Zhang1,2, Xianling Cong3, Xiangting Jin4,5

  • 1Key Laboratory of Organ Regeneration and Transplantation of Ministry of Education, First Hospital, Jilin University, Changchun, China. xiaolingzhang@jlu.edu.cn.

Cell Death & Disease
|August 5, 2023
PubMed

Insights

BRCA1-associated protein-1 (BAP1) stabilizes MYCN, a key driver in neuroblastoma. Inhibiting BAP1 may offer a new therapeutic strategy for MYCN-amplified cancers.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Genetics

Background:

  • MYCN amplification drives aggressive cancers like neuroblastoma (NB).
  • MYCN is considered 'undruggable,' necessitating research into its upstream regulators.
  • Understanding MYCN's post-translational modification is crucial for therapeutic development.

Purpose of the Study:

  • To investigate the role of BRCA1-associated protein-1 (BAP1) in MYCN regulation.
  • To explore BAP1 as a potential therapeutic target in MYCN-amplified neuroblastoma.

Main Methods:

  • Investigated BAP1's direct interaction with MYCN.
  • Performed BAP1 knockdown and MYCN rescue experiments in vitro and in vivo.
  • Assessed cellular response to BET inhibitor JQ1 and Aurora A kinase inhibitor Alisertib.
  • Analyzed BAP1 and MYCN protein correlation in neuroblastoma tissue arrays using immunohistochemistry (IHC).

Main Results:

  • BAP1 directly binds to MYCN, promoting its deubiquitination and stabilization.
  • BAP1 depletion inhibits neuroblastoma cell growth and migration, partially rescued by MYCN overexpression.
  • BAP1 depletion confers resistance to JQ1 and Alisertib treatments.
  • Positive correlation observed between BAP1 and MYCN protein levels in neuroblastoma tissues.

Conclusions:

  • BAP1 acts as an oncogene by stabilizing MYCN, revealing a novel post-translational regulatory mechanism.
  • BAP1 is a potential therapeutic target for MYCN-amplified neuroblastoma.

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