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Edna Gordian1, Jiannong Li2, Yuri Pevzner3
1Molecular Oncology Program, H. Lee Moffitt Cancer Center & Research Institute, Tampa, Florida 33612, United States of America.
Abstract:
Lung cancer is the second most common cancer and the leading cause of cancer-related deaths. Despite recent advances in the development of targeted therapies, patients with advanced disease remain incurable, mostly because metastatic non-small cell lung carcinomas (NSCLC) eventually become resistant to tyrosine kinase inhibitors (TKIs). Kinase inhibitors have the potential for target promiscuity because the kinase super family is the largest family of druggable genes that binds to a common substrate (ATP). As a result, TKIs often developed for a specific purpose have been found to act on other targets. Drug affinity chromatography has been used to show that dasatinib interacts with the TGFβ type I receptor (TβR-I), a serine-threonine kinase. To determine the potential biological relevance of this association, we studied the combined effects of dasatinib and TGFβ on lung cancer cell lines. We found that dasatinib treatment alone had very little effect; however, when NSCLC cell lines were treated with a combination of TGFβ and dasatinib, apoptosis was induced. Combined TGFβ-1 + dasatinib treatment had no effect on the activity of Smad2 or other non-canonical TGFβ intracellular mediators. Interestingly, combined TGFβ and dasatinib treatment resulted in a transient increase in p-Smad3 (seen after 3 hours). In addition, when NSCLC cells were treated with this combination, the pro-apoptotic protein BIM was up-regulated. Knockdown of the expression of Smad3 using Smad3 siRNA also resulted in a decrease in BIM protein, suggesting that TGFβ-1 + dasatinib-induced apoptosis is mediated by Smad3 regulation of BIM. Dasatinib is only effective in killing EGFR mutant cells, which is shown in only 10% of NSCLCs. Therefore, the observation that wild-type EGFR lung cancers can be manipulated to render them sensitive to killing by dasatinib could have important implications for devising innovative and potentially more efficacious treatment strategies for this disease.
Insights
This study reveals that combining TGFβ and dasatinib induces apoptosis in non-small cell lung cancer (NSCLC) cells by up-regulating BIM via Smad3. This finding offers new strategies for treating lung cancer, even in wild-type EGFR cases.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Lung cancer is a leading cause of cancer deaths, with advanced metastatic non-small cell lung carcinomas (NSCLC) developing resistance to tyrosine kinase inhibitors (TKIs).
- TKIs can exhibit target promiscuity due to the large number of druggable kinases, leading to unintended interactions.
- Dasatinib, a TKI, has been shown to interact with the TGFβ type I receptor (TβR-I).
Purpose of the Study:
- To investigate the biological relevance of the interaction between dasatinib and TGFβ signaling in lung cancer.
- To determine the combined effects of dasatinib and TGFβ on NSCLC cell lines.
- To explore potential therapeutic strategies for overcoming TKI resistance in NSCLC.
Main Methods:
- Drug affinity chromatography was used to identify dasatinib's interaction with TβR-I.
- NSCLC cell lines were treated with dasatinib alone, TGFβ alone, and a combination of both.
- Western blotting and siRNA knockdown were employed to analyze intracellular signaling pathways (Smad2, Smad3, p-Smad3) and protein expression (BIM).
Main Results:
- Dasatinib alone showed minimal effect on NSCLC cells, but the combination of TGFβ and dasatinib induced apoptosis.
- The combined treatment transiently increased p-Smad3 levels and up-regulated the pro-apoptotic protein BIM.
- Knockdown of Smad3 reduced BIM protein levels, indicating Smad3-mediated regulation of BIM in dasatinib and TGFβ-induced apoptosis.
Conclusions:
- The combination of TGFβ and dasatinib induces apoptosis in NSCLC cells through Smad3-dependent regulation of BIM.
- This finding suggests a potential therapeutic strategy to sensitize wild-type EGFR lung cancers to dasatinib, improving treatment efficacy.
- Targeting TGFβ signaling in conjunction with TKIs may offer a novel approach for treating advanced NSCLC, particularly in cases resistant to current therapies.
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