4.6 Article

Synergistic anti-proliferative activity of JQ1 and GSK2801 in triple-negative breast cancer

期刊

BMC CANCER
卷 22, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12885-022-09690-2

关键词

Breast cancer; RNASeq; Differential expression analysis; Drug resistance; Expression studies; MTT assay

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资金

  1. National Cancer Institute (NCI) Cancer Center Support Grant [P30 CA168524]
  2. National Institute of General Medical Science [P20 GM130423]
  3. Kansas IDEA Network Of Biomedical Research Excellence [P20-GM103418]
  4. METAvivor Research and Support, Inc.
  5. National Foundation for Cancer Research

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The combination of JQ1 and GSK2801 synergistically inhibits proliferation and results in selective gene regulation in TNBC cell lines. Functional enrichment analysis identified several metabolic pathways enriched with differentially expressed genes when the drugs were co-administered. Molecular modeling studies also predicted the binding of the drugs with specific proteins, suggesting another mechanism for their effects on metabolism and proliferation.
Background Triple-negative breast cancer (TNBC) constitutes 10-20% of breast cancers and is challenging to treat due to a lack of effective targeted therapies. Previous studies in TNBC cell lines showed in vitro growth inhibition when JQ1 or GSK2801 were administered alone, and enhanced activity when co-administered. Given their respective mechanisms of actions, we hypothesized the combinatorial effect could be due to the target genes affected. Hence the target genes were characterized for their expression in the TNBC cell lines to prove the combinatorial effect of JQ1 and GSK2801. Methods RNASeq data sets of TNBC cell lines (MDA-MB-231, HCC-1806 and SUM-159) were analyzed to identify the differentially expressed genes in single and combined treatments. The topmost downregulated genes were characterized for their downregulated expression in the TNBC cell lines treated with JQ1 and GSK2801 under different dose concentrations and combinations. The optimal lethal doses were determined by cytotoxicity assays. The inhibitory activity of the drugs was further characterized by molecular modelling studies. Results Global expression profiling of TNBC cell lines using RNASeq revealed different expression patterns when JQ1 and GSK2801 were co-administered. Functional enrichment analyses identified several metabolic pathways (i.e., systemic lupus erythematosus, PI3K-Akt, TNF, JAK-STAT, IL-17, MAPK, Rap1 and signaling pathways) enriched with upregulated and downregulated genes when combined JQ1 and GSK2801 treatment was administered. RNASeq identified downregulation of PTPRC, MUC19, RNA5-8S5, KCNB1, RMRP, KISS1 and TAGLN (validated by RT-qPCR) and upregulation of GPR146, SCARA5, HIST2H4A, CDRT4, AQP3, MSH5-SAPCD1, SENP3-EIF4A1, CTAGE4 and RNASEK-C17orf49 when cells received both drugs. In addition to differential gene regulation, molecular modelling predicted binding of JQ1 and GSK2801 with PTPRC, MUC19, KCNB1, TAGLN and KISS1 proteins, adding another mechanism by which JQ1 and GSK2801 could elicit changes in metabolism and proliferation. Conclusion JQ1-GSK2801 synergistically inhibits proliferation and results in selective gene regulation. Besides suggesting that combinatorial use could be useful therapeutics for the treatment of TNBC, the findings provide a glimpse into potential mechanisms of action for this combination therapy approach.

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