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Published on: October 27, 2020
Smoking attenuates transforming growth factor-β-mediated tumor suppression function through downregulation of Smad3
Debangshu Samanta1, Adriana L Gonzalez, Nagaraj Nagathihalli
1Department of Surgery, Vanderbilt University School of Medicine, 1161 21st Avenue South, Nashville, TN 37232, USA.
Abstract:
Epidemiologic studies have shown that most cases of lung cancers (85%-90%) are directly attributable to cigarette smoking. Although much information has been gained about the effects of cigarette smoking on various signaling pathways causing lung cancer, nothing is known about the effect of cigarette smoking on the TGF-β-induced tumor suppressor function in lung cancer. To address this issue, lung adenocarcinoma A549 and immortalized bronchial epithelial HPL1A cells were chronically treated with cigarette smoke condensate (CSC) and dimethyl sulfoxide (as a control) to mimic the conditions of long-term cigarette smoking. Prolonged exposure of these cells to CSC resulted in a decrease in Smad3 and Smad4 complex formation and TGF-β-mediated transcription due to reduced expression of Smad3. Long-term CSC treatment reduced apoptosis, increased cell viability, decreased TGF-β-mediated growth inhibition, and enhanced tumorigenicity. The decrease in apoptosis is due to the upregulation of Bcl-2, which is a downstream target of Smad3. Re-expression of Smad3 in the CSC-treated cells restored TGF-β signaling, increased apoptosis, and decreased cell viability and tumorigenicity. Withdrawal of CSC treatment resulted in the restoration of Smad3 expression, reduction in cell viability, and increased TGF-β-mediated growth inhibition. Expression of Smad3 is lower in lung tumors of current smokers than that observed in never-smokers. Collectively, these data provide evidence that cigarette smoking promotes tumorigenicity partly by abrogating TGF-β-mediated growth inhibition and apoptosis by reducing expression of Smad3.
Insights
Cigarette smoking impairs tumor suppressor functions in lung cancer by reducing Smad3 expression, leading to decreased apoptosis and increased cell viability. Restoring Smad3 reverses these effects, highlighting its role in smoking-induced lung cancer progression.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Cigarette smoking is a primary cause of lung cancer, linked to 85%-90% of cases.
- The impact of smoking on transforming growth factor-beta (TGF-β)-induced tumor suppressor functions in lung cancer remains largely unknown.
Purpose of the Study:
- To investigate the effect of chronic cigarette smoke condensate (CSC) exposure on TGF-β signaling and tumor suppressor functions in lung cancer cells.
- To elucidate the role of Smad3 expression in mediating these effects.
Main Methods:
- Lung adenocarcinoma (A549) and bronchial epithelial (HPL1A) cells were treated with CSC to simulate long-term smoking.
- Analyzed Smad3/Smad4 complex formation, TGF-β-mediated transcription, apoptosis, cell viability, and tumorigenicity.
- Investigated the effect of Smad3 re-expression and CSC withdrawal.
Main Results:
- CSC exposure reduced Smad3 expression, Smad3/Smad4 complex formation, and TGF-β-mediated transcription.
- CSC treatment decreased apoptosis (via Bcl-2 upregulation), increased cell viability, and enhanced tumorigenicity.
- Smad3 re-expression or CSC withdrawal restored TGF-β signaling, increased apoptosis, and reduced cell viability and tumorigenicity.
- Lower Smad3 expression was observed in lung tumors of current smokers compared to never-smokers.
Conclusions:
- Cigarette smoking promotes lung cancer tumorigenicity by abrogating TGF-β-mediated growth inhibition and apoptosis.
- Reduced Smad3 expression is a key mechanism through which smoking exerts these effects.
- Targeting Smad3 may offer therapeutic strategies for smoking-related lung cancers.
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