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BRD4 inhibitor GNE987 exerts anti-cancer effects by targeting super-enhancers in neuroblastoma
Yan-Ling Chen1,2, Xiao-Lu Li1, Gen Li1
1Institute of Pediatric Research, Children's Hospital of Soochow University, No. 92 Zhongnan Street, SIP, Suzhou, 215003, China.
Background:
Neuroblastoma (NB) is a common extracranial malignancy with high mortality in children. Recently, super-enhancers (SEs) have been reported to play a critical role in the tumorigenesis and development of NB via regulating a wide range of oncogenes Thus, the synthesis and identification of chemical inhibitors specifically targeting SEs are of great urgency for the clinical therapy of NB. This study aimed to characterize the activity of the SEs inhibitor GNE987, which targets BRD4, in NB.
Results:
In this study, we found that nanomolar concentrations of GNE987 markedly diminished NB cell proliferation and survival via degrading BRD4. Meanwhile, GNE987 significantly induced NB cell apoptosis and cell cycle arrest. Consistent with in vitro results, GNE987 administration (0.25 mg/kg) markedly decreased the tumor size in the xenograft model, with less toxicity, and induced similar BRD4 protein degradation to that observed in vitro. Mechanically, GNE987 led to significant downregulation of hallmark genes associated with MYC and the global disruption of the SEs landscape in NB cells. Moreover, a novel candidate oncogenic transcript, FAM163A, was identified through analysis of the RNA-seq and ChIP-seq data. FAM163A is abnormally transcribed by SEs, playing an important role in NB occurrence and development.
Conclusion:
GNE987 destroyed the abnormal transcriptional regulation of oncogenes in NB by downregulating BRD4, which could be a potential therapeutic candidate for NB.
Insights
The super-enhancer (SE) inhibitor GNE987 effectively reduces neuroblastoma (NB) cell growth and survival by degrading BRD4. This compound shows promise as a potential therapeutic agent for NB treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Neuroblastoma (NB) is a prevalent pediatric cancer with high mortality.
- Super-enhancers (SEs) are crucial in NB tumorigenesis by regulating oncogenes.
- Targeting SEs presents an urgent need for effective NB therapies.
Purpose of the Study:
- To evaluate the efficacy of the SE inhibitor GNE987, targeting BRD4, in neuroblastoma.
- To investigate the molecular mechanisms underlying GNE987's action in NB.
Main Methods:
- In vitro cell proliferation, apoptosis, and cell cycle assays.
- In vivo xenograft studies in a mouse model.
- RNA-sequencing (RNA-seq) and Chromatin immunoprecipitation sequencing (ChIP-seq) analyses.
Main Results:
- GNE987 significantly inhibited NB cell proliferation and survival by degrading BRD4.
- GNE987 induced apoptosis and cell cycle arrest in NB cells.
- In vivo studies demonstrated reduced tumor size with minimal toxicity, alongside BRD4 degradation and MYC-associated gene downregulation. A novel oncogene, FAM163A, regulated by SEs, was identified.
Conclusions:
- GNE987 disrupts oncogene transcription in NB by downregulating BRD4.
- GNE987 represents a potential therapeutic candidate for neuroblastoma treatment.
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