Thyrotropin prevents apoptosis by promoting cell adhesion and cell cycle progression in FRTL-5 cells
1Department of Pathology, Yamanashi Medical University, Nakakoma, Japan. lixin@res.yamanashi-med.ac.jp
Abstract:
Apoptosis has been shown to be involved in endocrine tissue homeostasis as well as regression due to hormone deprivation. The goal of this study was to induce apoptosis and to investigate a potential role of TSH as a survival factor in thyroid follicular cells (FRTL-5) in vitro. Our results indicated that FRTL-5 cells underwent anchorage-dependent apoptosis when plated in the absence of serum and hormones, but when the cells became attached to the substrate by addition of TSH in the medium, apoptosis was prevented. The apoptosis was evaluated by positive terminal deoxynucleotidyl transferase-mediated deoxy-UTP nick end labeling staining, typical apoptotic bodies by electron microscopy, DNA ladder by gel electrophoresis, and subdiploidy by propidium iodide-stained flow cytometry. TSH was shown to prevent apoptosis and maintain cell viability. cAMP partly mimicked this effect, which was inhibited by a specific inhibitor of protein kinase A, H-89. While investigating the mechanisms of apoptosis, we observed that the phosphorylated focal adhesion kinase was strengthened by TSH. Furthermore, FRTL-5 cells were found to undergo growth arrest in the G1 phase in the absence of TSH, accompanied by an elevated level of cyclin-dependent kinase inhibitor, p27, and a decreased level of cyclin D. In contrast, TSH promoted transition from G1 to S phase by decreasing P27 protein and increasing cyclin D expression. We concluded that in addition to regulating growth and differentiation, TSH may function as a survival factor in thyroid cells by preventing anchorage-dependent apoptosis in FRTL-5 cells partly via the cAMP pathway.
Insights
Thyroid-stimulating hormone (TSH) acts as a survival factor for thyroid cells, preventing programmed cell death (apoptosis) in FRTL-5 cells. TSH supports cell viability and regulates cell cycle progression, highlighting its crucial role beyond growth and differentiation.
Area of Science:
- Endocrinology
- Cell Biology
- Molecular Biology
Background:
- Apoptosis is critical for endocrine tissue homeostasis and regression upon hormone deprivation.
- Thyroid follicular cells (FRTL-5) are a relevant in vitro model for studying thyroid cell biology.
- The role of TSH in preventing apoptosis in thyroid cells requires further investigation.
Purpose of the Study:
- To investigate the role of TSH as a survival factor in thyroid follicular cells (FRTL-5).
- To determine if TSH can prevent anchorage-dependent apoptosis in FRTL-5 cells.
- To elucidate the molecular mechanisms by which TSH influences cell survival and proliferation.
Main Methods:
- Induction of apoptosis in FRTL-5 cells via serum and hormone deprivation.
- Evaluation of apoptosis using TUNL staining, electron microscopy, DNA laddering, and flow cytometry.
- Assessment of cell cycle progression and protein expression (p27, cyclin D) via Western blotting and flow cytometry.
Main Results:
- FRTL-5 cells underwent anchorage-dependent apoptosis when deprived of serum and hormones.
- TSH addition prevented apoptosis and maintained cell viability.
- TSH promoted cell cycle progression from G1 to S phase by modulating p27 and cyclin D levels.
- TSH signaling involved the cAMP pathway and affected focal adhesion kinase phosphorylation.
Conclusions:
- TSH functions as a survival factor in thyroid cells, preventing anchorage-dependent apoptosis in FRTL-5 cells.
- The anti-apoptotic effect of TSH is partly mediated through the cAMP pathway.
- TSH regulates both cell survival and cell cycle progression in thyroid follicular cells.
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