Transforming growth factor β signaling overcomes dasatinib resistance in lung cancer

Edna Gordian1, Jiannong Li2, Yuri Pevzner3

  • 1Molecular Oncology Program, H. Lee Moffitt Cancer Center & Research Institute, Tampa, Florida 33612, United States of America.

Plos One
|December 16, 2014
PubMed

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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