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Downregulation of Rad51 Expression and Activity Potentiates the Cytotoxic Effect of Osimertinib in Human Non-Small
Jen-Chung Ko1, Jyh-Cheng Chen2, Ching-Hsiu Huang2
1Department of Internal Medicine, National Taiwan University Hospital Hsin-Chu Branch, Hsinchu, Taiwan.
Introduction:
Osimertinib (AZD9291) is a third-generation epidermal growth factor receptor (EGFR) tyrosine kinase inhibitor that has shown significant clinical benefits in patients with EGFR-sensitizing mutations or the EGFR T790M mutation. The homologous recombination (HR) pathway is crucial for repairing DNA double-strand breaks (DSBs). Rad51 plays a central role in HR, facilitating the search for homology and promoting DNA strand exchange between homologous DNA molecules. Rad51 is overexpressed in numerous types of cancer cells. B02, a specific small molecule inhibitor of Rad51, inhibits the DNA strand exchange activity of Rad51. Previous studies have indicated that B02 disrupted Rad51 foci formation in response to DNA damage and inhibited DSBs repair in human cells and sensitized them to chemotherapeutic drugs in vitro and in vivo. However, the potential therapeutic effects of combining osimertinib with a Rad51 inhibitor are not well understood. The aim of this study was to elucidate whether the downregulation of Rad51 expression and activity can enhance the osimertinib-induced cytotoxicity in non-small cell lung cancer (NSCLC) cells.
Methods:
We used the MTS, trypan blue dye exclusion and colony-formation ability assay to determine whether osimertinib alone or in combination with B02 had cytotoxic effects on NSCLC cell lines. Real-time polymerase chain reaction was conducted to measure the amounts of Rad51 mRNA. The protein levels of phosphorylated AKT and Rad51 were determined by Western blot analysis.
Results:
We found that osimertinib reduced Rad51 expression by inactivating AKT activity. Rad51 knockdown using small interfering RNA or AKT inactivation through the phosphatidylinositol 3-kinase inhibitor LY294002 or si-AKT RNA transfection enhanced the cytotoxic and growth inhibitory effects of osimertinib. In contrast, AKT-CA (a constitutively active form of AKT) vector-enforced expression could mitigate the cytotoxic and cell growth inhibitory effects of osimertinib. Furthermore, B02 significantly enhanced the cytotoxic and cell growth inhibitory effects of osimertinib in NSCLC cells. Compared to parental cells, the activation of AKT and Rad51 expression in osimertinib-resistant cells could not be significantly inhibited by osimertinib treatment. Moreover, the increased expression of Rad51 is associated with the resistance mechanism in osimertinib-resistant H1975 and A549 cells.
Conclusion:
Collectively, the downregulation of Rad51 expression and activity enhances the cytotoxic effect of osimertinib in human NSCLC cells.
Insights
Combining osimertinib with a Rad51 inhibitor enhances its cancer-fighting effects in non-small cell lung cancer (NSCLC). Downregulating Rad51 expression and activity boosts osimertinib
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Osimertinib is a third-generation epidermal growth factor receptor (EGFR) tyrosine kinase inhibitor effective against EGFR-mutated non-small cell lung cancer (NSCLC).
- The homologous recombination (HR) pathway, involving Rad51, is critical for DNA double-strand break repair and is often overexpressed in cancers.
- B02 is a small molecule inhibitor of Rad51, known to disrupt DNA repair and sensitize cells to chemotherapy.
Purpose of the Study:
- To investigate whether inhibiting Rad51 expression and activity can enhance the efficacy of osimertinib in NSCLC.
- To explore the role of AKT signaling in mediating the effects of osimertinib and Rad51 inhibition.
Main Methods:
- Cytotoxicity was assessed using MTS, trypan blue dye exclusion, and colony-formation assays.
- Rad51 mRNA levels were quantified using real-time polymerase chain reaction.
- Protein levels of phosphorylated AKT and Rad51 were analyzed via Western blot.
Main Results:
- Osimertinib treatment reduced Rad51 expression by inactivating AKT.
- Rad51 knockdown or AKT inhibition potentiated osimertinib's cytotoxic and growth-inhibitory effects.
- Conversely, enforced expression of active AKT (AKT-CA) mitigated osimertinib's effects.
- The Rad51 inhibitor B02 significantly enhanced osimertinib's efficacy in NSCLC cells.
- Osimertinib-resistant cells exhibited elevated AKT and Rad51 activation, suggesting Rad51 is a resistance mechanism.
Conclusions:
- Downregulation of Rad51 expression and activity significantly enhances the cytotoxic effects of osimertinib in human NSCLC cells.
- Targeting Rad51, potentially through inhibitors like B02, represents a promising strategy to overcome osimertinib resistance in NSCLC.
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