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Reciprocal regulation of c-Src and STAT3 in non-small cell lung cancer
Lauren Averett Byers1, Banibrata Sen, Babita Saigal
1Division of Cancer Medicine and Department of Thoracic/Head and Neck Medical Oncology, Unit 432, The University of Texas M.D. Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, TX 77030-4009, USA.
Purpose:
Signal transducer and activator of transcription-3 (STAT3) is downstream of growth factor and cytokine receptors, and regulates key oncogenic pathways in non-small cell lung cancer (NSCLC). Activation of STAT3 by cellular Src (c-Src) promotes tumor progression. We hypothesized that c-Src inhibition could activate STAT3 by inducing a homeostatic feedback loop, contributing to c-Src inhibitor resistance.
Experimental Design:
The effects of c-Src inhibition on total and phosphorylated STAT3 were measured in NSCLC cell lines and in murine xenograft models by Western blotting. c-Src and STAT3 activity as indicated by phosphorylation was determined in 46 human tumors and paired normal lung by reverse phase protein array. Modulation of dasatinib (c-Src inhibitor) cytotoxicity by STAT3 knockdown was measured by MTT, cell cycle, and apoptosis assays.
Results:
Depletion of c-Src by small interfering RNA or sustained inhibition by dasatinib increased pSTAT3, which could be blocked by inhibition of JAK. Similarly, in vivo pSTAT3 levels initially decreased but were strongly induced after sustained dasatinib treatment. In human tumors, phosphorylation of the autoinhibitory site of c-Src (Y527) correlated with STAT3 phosphorylation (r = 0.64; P = 2.5 x 10(-6)). STAT3 knockdown enhanced the cytotoxicity of dasatinib.
Conclusions:
c-Src inhibition leads to JAK-dependent STAT3 activation in vitro and in vivo. STAT3 knockdown enhances the cytotoxicity of dasatinib, suggesting a compensatory pathway that allows NSCLC survival. Data from human tumors showed a reciprocal regulation of c-Src and STAT3 activation, suggesting that this compensatory pathway functions in human NSCLC. These results provide a rationale for combining c-Src and STAT3 inhibition to improve clinical responses.
Insights
Inhibiting cellular Src (c-Src) in non-small cell lung cancer (NSCLC) paradoxically activates Signal transducer and activator of transcription-3 (STAT3). This STAT3 activation promotes resistance, but blocking STAT3 enhances c-Src inhibitor efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Signal transducer and activator of transcription-3 (STAT3) is a key regulator in non-small cell lung cancer (NSCLC) oncogenic pathways.
- Cellular Src (c-Src) activation of STAT3 promotes tumor progression in NSCLC.
- Understanding STAT3 regulation is crucial for developing effective NSCLC therapies.
Purpose of the Study:
- To investigate the hypothesis that c-Src inhibition could activate STAT3 via a feedback loop, contributing to resistance against c-Src inhibitors.
- To explore the therapeutic implications of targeting this feedback mechanism in NSCLC.
Main Methods:
- Western blotting was used to assess STAT3 phosphorylation in NSCLC cell lines and murine xenografts following c-Src inhibition.
- Reverse phase protein array analyzed c-Src and STAT3 phosphorylation in human NSCLC tumors and normal lung tissue.
- Cytotoxicity assays (MTT, cell cycle, apoptosis) evaluated the impact of STAT3 knockdown on dasatinib efficacy.
Main Results:
- c-Src inhibition, using dasatinib or siRNA, led to increased STAT3 phosphorylation (pSTAT3) in vitro and in vivo.
- Sustained dasatinib treatment resulted in strong pSTAT3 induction.
- STAT3 knockdown significantly enhanced dasatinib-induced cytotoxicity in NSCLC cells.
- Human tumor data revealed a correlation between c-Src and STAT3 phosphorylation, indicating reciprocal regulation.
Conclusions:
- c-Src inhibition activates JAK-dependent STAT3 signaling in NSCLC, both in vitro and in vivo.
- STAT3 acts as a compensatory survival pathway in NSCLC, contributing to resistance against c-Src inhibitors.
- Combined inhibition of c-Src and STAT3 presents a promising strategy to overcome resistance and improve treatment outcomes in NSCLC.
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