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Updated: Apr 27, 2026

A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Re-purposing clinical kinase inhibitors to enhance chemosensitivity by overriding checkpoints
Neil Beeharry1, Eugenia Banina2, James Hittle1
1Cancer Biology Program; Fox Chase Cancer Center; Philadelphia, PA USA.
Abstract:
Inhibitors of the DNA damage checkpoint kinase, Chk1, are highly effective as chemo- and radio-sensitizers in preclinical studies but are not well-tolerated by patients. We exploited the promiscuous nature of kinase inhibitors to screen 9 clinically relevant kinase inhibitors for their ability to sensitize pancreatic cancer cells to a sub-lethal concentration of gemcitabine. Bosutinib, dovitinib, and BEZ-235 were identified as sensitizers that abrogated the DNA damage checkpoint. We further characterized bosutinib, an FDA-approved Src/Abl inhibitor approved for chronic myelogenous leukemia. Unbeknownst to us, we used an isomer (Bos-I) that was unknowingly synthesized and sold to the research community as "authentic" bosutinib. In vitro and cell-based assays showed that both the authentic bosutinib and Bos-I inhibited DNA damage checkpoint kinases Chk1 and Wee1, with Bos-I showing greater potency. Imaging data showed that Bos-I forced cells to override gemcitabine-induced DNA damage checkpoint arrest and destabilized stalled replication forks. These inhibitors enhanced sensitivity to the DNA damaging agents' gemcitabine, cisplatin, and doxorubicin in pancreatic cancer cell lines. The in vivo efficacy of Bos-I was validated using cells derived directly from a pancreatic cancer patient's tumor. Notably, the xenograft studies showed that the combination of gemcitabine and Bos-I was significantly more effective in suppressing tumor growth than either agent alone. Finally, we show that the gatekeeper residue in Wee1 dictates its sensitivity to the 2 compounds. Our strategy to screen clinically relevant kinase inhibitors for off-target effects on cell cycle checkpoints is a promising approach to re-purpose drugs as chemosensitizers.
Insights
Researchers repurposed kinase inhibitors to enhance pancreatic cancer treatment. A specific isomer, Bos-I, effectively sensitized cancer cells to chemotherapy by disrupting DNA damage checkpoints, showing promise for improved patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- DNA damage checkpoint kinase inhibitors (e.g., Chk1 inhibitors) show preclinical efficacy as chemo- and radio-sensitizers.
- Clinical application of these inhibitors is limited by poor patient tolerability.
Purpose of the Study:
- To screen clinically relevant kinase inhibitors for their ability to sensitize pancreatic cancer cells to gemcitabine.
- To identify off-target effects of kinase inhibitors on cell cycle checkpoints for drug repurposing.
Main Methods:
- Screened 9 clinically relevant kinase inhibitors for gemcitabine sensitization in pancreatic cancer cells.
- Utilized in vitro, cell-based, and in vivo xenograft models.
- Characterized the effects of identified inhibitors on DNA damage checkpoint kinases (Chk1 and Wee1).
Main Results:
- Bosutinib, dovitinib, and BEZ-235 were identified as sensitizers that abrogated the DNA damage checkpoint.
- An isomer of bosutinib (Bos-I) demonstrated potent inhibition of Chk1 and Wee1, overriding gemcitabine-induced arrest and destabilizing replication forks.
- Combination therapy of gemcitabine and Bos-I significantly suppressed tumor growth in patient-derived xenografts.
Conclusions:
- Clinically relevant kinase inhibitors can be repurposed as effective chemosensitizers by targeting cell cycle checkpoints.
- Bos-I represents a promising candidate for combination therapy in pancreatic cancer, enhancing sensitivity to DNA damaging agents.
- Drug repurposing via screening for off-target effects offers a viable strategy for developing novel cancer therapeutics.
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