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Published on: June 3, 2016
Dose-dependent effect of FHIT-inducible expression in Calu-1 lung cancer cell line
Andrea Cavazzoni1, Pier Giorgio Petronini, Maricla Galetti
1Department of Experimental Medicine, University of Parma, via Volturno 39, Parma 43100, Italy.
Abstract:
Abnormalities in the expression of the tumour suppressor fragile histidine triad (FHIT) gene have been reported in a variety of human tumours, including lung cancer and restoration of its expression in cancer cell lines resulted in the inhibition of proliferation and apoptosis induction. Most of the studies that have assigned a proapoptotic role to the FHIT gene were performed in adenoviral-FHIT-transduced cancer cells expressing high levels of the Fhit protein. The present work was the first study designed to investigate the effects of FHIT gene replacement in a human FHIT-negative non-small-cell lung cancer (NSCLC) cell line (Calu-1) by using a hormone-inducible expression system that allows tight modulation of the transgene expression. Through this approach, we demonstrated that a prolonged induction was required to accumulate the Fhit protein at levels adequate to promote a significant decrease of cell proliferation. Analysis of cell-cycle phase distribution showed an accumulation of cells in the G0/G1 phase and a concomitant decrease in the S phase. Moreover, an upregulation of p21waf1 transcript was found, which could account for the alteration of the cycling properties of the cells. The growth-inhibitory effects observed were not associated with apoptosis appearance, and although in these conditions the Fhit protein content was higher than in normal bronchial human epithelial cells (NHBE), it was still significantly lower than the level capable of inducing apoptosis in Calu-1 cells after adenoviral-mediated FHIT gene transfer. These results indicate that the tumour suppressor properties of Fhit are strictly related to its expression level and show that the Fhit protein has a dose-dependent antiproliferative effect on the Fhit-negative Calu-1 lung cancer cell line.
Insights
Restoring the fragile histidine triad (FHIT) gene in lung cancer cells significantly reduced proliferation. The tumor suppressor
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- The fragile histidine triad (FHIT) gene is a known tumor suppressor.
- FHIT gene abnormalities are linked to various cancers, including lung cancer.
- Previous studies showed FHIT restoration inhibits cancer cell proliferation and induces apoptosis.
Purpose of the Study:
- To investigate the effects of FHIT gene replacement in a human FHIT-negative non-small-cell lung cancer (NSCLC) cell line.
- To explore the dose-dependent antiproliferative effects of the Fhit protein.
- To analyze the impact of FHIT expression on cell cycle progression.
Main Methods:
- Utilized a hormone-inducible expression system for FHIT gene replacement in Calu-1 NSCLC cells.
- Modulated transgene expression to control Fhit protein levels.
- Analyzed cell proliferation, cell-cycle phase distribution, and p21waf1 transcript levels.
Main Results:
- Prolonged FHIT induction led to adequate Fhit protein accumulation, significantly decreasing cell proliferation.
- Cells accumulated in the G0/G1 phase, with a decrease in the S phase.
- Upregulation of p21waf1 transcript was observed, correlating with altered cell cycling.
- Growth inhibition occurred without apoptosis induction, and Fhit levels were lower than those inducing apoptosis in prior studies.
Conclusions:
- The tumor suppressor properties of Fhit are dose-dependent.
- Fhit protein exhibits a dose-dependent antiproliferative effect on FHIT-negative NSCLC cells.
- FHIT gene replacement requires sufficient protein accumulation for significant tumor suppressor activity.
