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In Vitro Ubiquitination and Deubiquitination Assays of Nucleosomal Histones
Published on: July 25, 2019
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.
Abstract:
The transcription factor MYCN is frequently amplified and overexpressed in a variety of cancers including high-risk neuroblastoma (NB) and promotes tumor cell proliferation, survival, and migration. Therefore, MYCN is being pursued as an attractive therapeutic target for selective inhibition of its upstream regulators because MYCN is considered a "undruggable" target. Thus, it is important to explore the upstream regulators for the transcription and post-translational modification of MYCN. Here, we report that BRCA1-associated protein-1 (BAP1) promotes deubiquitination and subsequent stabilization of MYCN by directly binding to MYCN protein. Furthermore, BAP1 knockdown inhibits NB tumor cells growth and migration in vitro and in vivo, which can be rescued partially by ectopic expression of MYCN. Importantly, depletion of BAP1 confers cellular resistance to bromodomain and extraterminal (BET) protein inhibitor JQ1 and Aurora A kinase inhibitor Alisertib. Furthermore, IHC results of NB tissue array confirmed the positive correlation between BAP1 and MYCN protein. Altogether, our work not only uncovers an oncogenic function of BAP1 by stabilizing MYCN, but also reveals a critical mechanism for the post-translational regulation of MYCN in NB. Our findings further indicate that BAP1 could be a potential therapeutic target for MYCN-amplified neuroblastoma.
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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