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Published on: August 12, 2015
BRD4 inhibition induces synthetic lethality in ARID2-deficient hepatocellular carcinoma by increasing DNA damage
Dan-Dan He1, Xue-Ying Shang1, Na Wang1
1Key Laboratory of Systems Biomedicine (Ministry of Education), Shanghai Center for Systems Biomedicine, Shanghai Jiao Tong University, Shanghai, 200240, China.
Abstract:
Hepatocellular carcinoma (HCC) has emerged as the third cause of cancer-related death owing to lacking effective systemic therapies. Genomic DNA sequencing revealed the high frequency of loss-of-function mutations in ARID2, which encodes a subunit of SWI/SNF chromatin remodeling complex, however, the therapeutic strategy for the HCC patients with ARID2 mutations is still completely unclear. In this study, we first performed a high-throughput screening approach using a compound library consisting of 2 180 FDA-approved drugs and other compounds, to elicit the potential drugs for synthetic lethality to target ARID2-deficient HCC cells. Interestingly, JQ1, a selective inhibitor of bromodomain protein BRD4, uniquely suppressed the growth of ARID2- deficient HCC cells. Next JQ1 is further confirmed to predominantly induce cell lethality upon ARID2 depletion through exacerbating DNA damage, especially double strand breaks (DSBs). Functional assays demonstrated that both BRD4 inhibition and ARID2 deficiency synergistically impede two main DNA damage repair pathways, homologous recombination (HR) and non-homologous end-joining (NHEJ), through attenuating the transcription of BRCA1, RAD51, and 53BP1, which encode the core molecules responsible for DSB repair. Mechanistically, both ARID2 and BRD4 exert a synergistic effect for maintaining transcriptional enhancer-promoter loops of these genes within chromatin conformation. However, as both ARID2 and BRD4 are disrupted, the expression of these DNA repair-related genes in response to DNA damage are hindered, resulting in DSB accumulation and cell apoptosis. Taken together, this study discloses that BRD4 inhibition may induce synthetic lethality in ARID2-deficient HCC cells, which might provide a potential therapeutic strategy for HCC patients with ARID2 mutations.
Insights
Targeting ARID2-deficient hepatocellular carcinoma (HCC) cells with BRD4 inhibitors like JQ1 shows promise. This approach exploits synthetic lethality by impairing DNA repair, offering a potential new therapy for HCC patients with ARID2 mutations.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Hepatocellular carcinoma (HCC) is a leading cause of cancer death with limited effective treatments.
- Loss-of-function mutations in ARID2, a SWI/SNF chromatin remodeler subunit, are frequent in HCC.
- Therapeutic strategies for ARID2-mutated HCC remain unclear.
Purpose of the Study:
- To identify potential drugs for synthetic lethality targeting ARID2-deficient HCC cells.
- To investigate the therapeutic potential of BRD4 inhibition in ARID2-mutated HCC.
Main Methods:
- High-throughput screening of 2,180 FDA-approved drugs and compounds.
- Assessing the effect of JQ1 (BRD4 inhibitor) on ARID2-deficient HCC cell growth.
- Investigating DNA damage and repair pathways (HR, NHEJ) in response to JQ1 and ARID2 deficiency.
Main Results:
- JQ1 selectively suppressed the growth of ARID2-deficient HCC cells.
- JQ1 exacerbated DNA damage, particularly double-strand breaks (DSBs), upon ARID2 depletion.
- BRD4 inhibition and ARID2 deficiency synergistically impaired homologous recombination and non-homologous end-joining pathways by downregulating BRCA1, RAD51, and 53BP1.
Conclusions:
- BRD4 inhibition induces synthetic lethality in ARID2-deficient HCC cells.
- Disruption of ARID2 and BRD4 hinders DNA repair gene expression, leading to DSB accumulation and apoptosis.
- BRD4 inhibition presents a potential therapeutic strategy for HCC patients with ARID2 mutations.
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