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BET Bromodomain Inhibition Potentiates Ocular Melanoma Therapy by Inducing Cell Cycle Arrest
Xingyu Chen1, Rui Huang2,3, Zhe Zhang2,3
1Department of Ophthalmology, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, Shanghai, China.
Purpose:
Ocular melanoma is a common primary malignant ocular tumor in adults with limited effective treatments. Epigenetic regulation plays an important role in tumor development. The switching/sucrose nonfermentation (SWI/SNF) chromatin remodeling complex and bromodomain and extraterminal domain family proteins are epigenetic regulators involved in several cancers. We aimed to screen a candidate small molecule inhibitor targeting these regulators and investigate its effect and mechanism in ocular melanoma.
Methods:
We observed phenotypes caused by knockdown of the corresponding gene and synergistic effects with BRD inhibitor treatment and SWI/SNF complex knockdown. The effect of JQ-1 on ocular melanoma cell cycle and apoptosis was analyzed with flow cytometry. Via RNA sequencing, we also explored the mechanism of BRD4.
Results:
The best tumor inhibitory effect was observed for the BRD4 inhibitor (JQ-1), although there were no statistically obvious changes in the shBRD4 and shBRD9 groups. Interestingly, the inhibitory effect of JQ-1 was decrease in the shBRD4 group. JQ-1 inhibits the growth of melanoma in various cell lines and in tumor-bearing mice. We found 17 of these 28 common differentially expressed genes were downregulated after MEL270 and MEL290 cells treated with JQ-1. Four of these 17 genes, TP53I11, SH2D5, SEMA5A, and MDGA1, were positively correlated with BRD4. In TCGA database, low expression of TP53I11, SH2D5, SEMA5A, and MDGA1 improved the overall survival rate of patients. Furthermore, the disease-free survival rate was increased in the groups with low expression of TP53I11, SH2D5, and SEMA5A.
Conclusions:
JQ-1 may act downstream of BRD4 and suppress ocular melanoma growth by inducing G1 cell cycle arrest.
Insights
The BRD4 inhibitor JQ-1 effectively suppresses ocular melanoma growth by inducing cell cycle arrest. This study identifies potential therapeutic targets and biomarkers for improved patient survival in ocular melanoma.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Ocular melanoma is a prevalent adult cancer with limited treatment options.
- Epigenetic dysregulation, including SWI/SNF complex and BET proteins, is implicated in cancer development.
- Targeting epigenetic regulators offers a promising therapeutic strategy for ocular melanoma.
Purpose of the Study:
- To screen for small molecule inhibitors targeting epigenetic regulators in ocular melanoma.
- To investigate the therapeutic effect and underlying mechanism of a candidate inhibitor.
- To identify potential biomarkers for patient stratification and treatment response.
Main Methods:
- Phenotypic analysis via gene knockdown (SWI/SNF complex, BRD4).
- Assessment of cell cycle and apoptosis using flow cytometry.
- RNA sequencing to explore gene expression changes and identify therapeutic targets.
- Analysis of The Cancer Genome Atlas (TCGA) database for survival correlations.
Main Results:
- The BRD4 inhibitor JQ-1 demonstrated significant tumor inhibitory effects in ocular melanoma cell lines and in vivo models.
- JQ-1 treatment led to downregulation of specific genes (TP53I11, SH2D5, SEMA5A, MDGA1), which were positively correlated with BRD4 expression.
- Low expression of these identified genes correlated with improved overall and disease-free survival rates in ocular melanoma patients.
Conclusions:
- JQ-1 effectively suppresses ocular melanoma growth, potentially acting downstream of BRD4.
- The mechanism involves inducing G1 cell cycle arrest.
- TP53I11, SH2D5, SEMA5A, and MDGA1 may serve as prognostic biomarkers for ocular melanoma.
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