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Updated: May 7, 2026

Evaluating In Vitro DNA Damage Using Comet Assay
Published on: October 11, 2017
A small molecule disrupts G4-STAT1 interaction and synergizes with olaparib to drive cancer cell death
Yingying Wang1, Xuenan Zhang2, Yuting Bian1
1State Key Laboratory of Natural Medicines, Joint International Research Laboratory of Target Discovery and New Drug Innovation (Ministry of Education), and Jiangsu Key Laboratory of Bioactive Natural Product Research, China Pharmaceutical University, Nanjing, Jiangsu 211198, PR China.
Abstract:
Bloom syndrome protein (BLM), a RecQ family DNA helicase, is consistently overexpressed in multiple malignancies, yet its therapeutic potential remains largely unexplored. Herein, we focused on targeting the BLM promoter G-quadruplex (BLM-G4) to inhibit the BLM signaling pathway. We first characterized the parallel BLM-G4 in the BLM promoter region. Subsequently, it is shown for the first time that BLM-G4 recruits phosphorylated signal transducer and activator of transcription 1 (pSTAT1) to activate BLM expression. Importantly, two natural alkaloids, berberine (BER) and coptisine (COP), compete with STAT1 for binding to BLM-G4, thereby significantly suppressing BLM expression in colon cancer cells. The BER/COP-BLM-G4 complex structures were determined using nuclear magnetic resonance experiments, which provide valuable insights for the rational design of next-generation BLM-G4-targeting ligands. Beyond BLM regulation, the conjoint analysis of genome-wide STAT1-CUT&Tag-seq, G4-CUT&Tag-seq, and COP-RNA-seq demonstrated STAT1 as a general G4-binding transcription factor and COP as a pan-genomic G4 stabilizer. Furthermore, BER/COP exhibited a pronounced synergistic effect with olaparib in inducing colon cancer cell death by disrupting DNA repair pathways and intensifying DNA damage. Collectively, our findings reveal a novel epigenetic mechanism of BLM gene upregulation mediated by BLM-G4-STAT1 interaction and suggest that the combination therapy of G4 stabilizers with poly(ADP) ribose polymerase (PARP) inhibitors is a promising strategy for treating complex cancers.
Insights
Natural compounds berberine and coptisine suppress Bloom syndrome (BLM) expression by targeting BLM-G4 structures. This discovery offers a new strategy for colon cancer treatment, potentially combining G-quadruplex stabilizers with PARP inhibitors.
Area of Science:
- Molecular Biology
- Epigenetics
- Pharmacology
Background:
- Bloom syndrome protein (BLM) is overexpressed in cancers, but its therapeutic targeting is underexplored.
- The BLM promoter contains a G-quadruplex (BLM-G4) structure with potential regulatory roles.
Purpose of the Study:
- To investigate the role of BLM-G4 in regulating BLM expression.
- To explore natural alkaloids berberine (BER) and coptisine (COP) as potential BLM-G4 targeting agents.
- To evaluate the therapeutic potential of BLM-G4 targeting in colon cancer.
Main Methods:
- Characterization of the parallel BLM-G4 structure.
- Nuclear magnetic resonance (NMR) to determine BER/COP-BLM-G4 complex structures.
- Genome-wide STAT1-CUT&Tag-seq, G4-CUT&Tag-seq, and COP-RNA-seq analyses.
- Synergistic effect evaluation with olaparib (a PARP inhibitor).
Main Results:
- BLM-G4 recruits phosphorylated signal transducer and activator of transcription 1 (pSTAT1) to activate BLM expression.
- Berberine and coptisine bind to BLM-G4, competing with STAT1 and suppressing BLM expression in colon cancer cells.
- STAT1 is identified as a general G4-binding transcription factor, and COP as a pan-genomic G4 stabilizer.
- BER/COP showed synergistic effects with olaparib in colon cancer cell death by enhancing DNA damage and disrupting DNA repair.
Conclusions:
- A novel epigenetic mechanism involving BLM-G4-STAT1 interaction upregulates BLM gene expression.
- Berberine and coptisine are effective BLM-G4 stabilizers with potential as anti-cancer agents.
- Combination therapy of G4 stabilizers and PARP inhibitors presents a promising strategy for complex cancers.
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