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Published on: October 27, 2014
TFF-1 Functions to Suppress Multiple Phenotypes Associated with Lung Cancer Progression
Kentaro Minegishi1, Yoh Dobashi2,3, Hiroyoshi Tsubochi1
1Department of Thoracic Surgery, Saitama Medical Center, Jichi Medical University, Saitama, Japan.
Introduction:
Trefoil Factor (TFF) is a member of a protein family comprised of three isoforms, of which TFF-1 exhibits antithetical functions; promotion or suppression of cell proliferation, survival and invasion, depending on the cancer type. However, the pathobiological function of TFF-1 in lung carcinoma has been still unclear.
Methods:
We examined the expression and secretion of TFF-1 using cultured human lung carcinoma cells by immunoblotting, immunofluorescence, enzyme-linked immunosorbent assay and quantitative real-time PCR analyses. The effects of TFF-1 on various phenotypes were analyzed in two cell lines, including those transfected with cDNA encoding TFF-1. Cell proliferation and death were examined by hemocytometer cell counting and by colorimetric viability/cytotoxicity assay. Cell cycle profile, migration and invasion were also examined by flow cytometry, wound healing assay and Matrigel Transwell assay, respectively. The effect of TFF-1 overexpression was confirmed by additional transfection of TFF-1-specific siRNA.
Results:
Endogenous TFF-1 protein expression and secretion into the media were observed exclusively in adenocarcinoma-derived cell lines. Forced overexpression of TFF-1 drove cell cycle transition, while the proliferation decreased by 19% to 25% due to increased cell death. This cell death was predominantly caused by apoptosis, as assessed by the activation of caspase 3/7. Cell migration was also suppressed by 71% to 82% in TFF-1-transfected cells. The suppressive effect of TFF-1 on proliferation and migration was restored by transfection of TFF-1 siRNA. Moreover, invasion was also suppressed to 77% to 83% in TFF-1-transfected cells.
Conclusion:
These findings reveal that TFF-1 functions as a suppressor of cancer proliferation by induction of apoptosis, cell migration and invasion and thus may provide a synergistic target for potential treatment strategies for human lung carcinoma.
Insights
Trefoil Factor-1 (TFF-1) suppresses lung carcinoma cell proliferation, migration, and invasion by inducing apoptosis. This protein may offer a novel therapeutic target for lung cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Trefoil Factor (TFF) proteins, including TFF-1, have dual roles in cancer, potentially promoting or suppressing tumor progression.
- The specific function of TFF-1 in lung carcinoma remained largely undefined prior to this study.
Purpose of the Study:
- To elucidate the pathobiological role of TFF-1 in human lung carcinoma.
- To investigate the effects of TFF-1 on cancer cell phenotypes, including proliferation, apoptosis, migration, and invasion.
Main Methods:
- Examined TFF-1 expression and secretion in lung carcinoma cell lines using immunoblotting, immunofluorescence, ELISA, and qRT-PCR.
- Analyzed the impact of TFF-1 overexpression on cell proliferation, death (apoptosis), cell cycle, migration, and invasion.
- Utilized TFF-1-specific siRNA to confirm the suppressive effects of TFF-1.
Main Results:
- Endogenous TFF-1 was expressed and secreted in adenocarcinoma cell lines.
- TFF-1 overexpression decreased proliferation by 19-25% via apoptosis induction (caspase 3/7 activation).
- TFF-1 suppressed cell migration (71-82%) and invasion (77-83%), effects reversible by TFF-1 siRNA.
Conclusions:
- TFF-1 acts as a tumor suppressor in lung carcinoma by inhibiting proliferation, migration, and invasion through apoptosis induction.
- TFF-1 represents a potential synergistic therapeutic target for human lung carcinoma treatment strategies.
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