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Microarray analysis of cytokine activation of apoptosis pathways in the thyroid
Su He Wang1, Mary Van Antwerp, Rork Kuick
1Department of Medicine, University of Michigan Medical School, Ann Arbor, MI 48109-0648, USA.
Abstract:
It has been suggested that Fas-mediated apoptosis plays an important role in the pathogenesis of autoimmune thyroid diseases. Our previous studies have demonstrated that normal primary thyroid epithelial cells are resistant to Fas-mediated apoptosis, but the resistance can be overcome by pretreatment with a combination of interferon-gamma (IFN-gamma) and IL-1beta. To understand the molecular mechanism responsible for the IFN-gamma/IL-1beta effects, we profiled changes in the transcription induced by these two cytokines in normal human thyroid cells, using cDNA microarrays. We found that IFN-gamma/IL-1beta showed a significant increase in apoptosis-related genes such as inducible nitric oxide synthase (iNOS), receptor-interacting protein 2 (RIP2), and caspases 10. These increases were confirmed by other methods, including real-time PCR and Western blot. Furthermore, the sensitization of primary thyroid epithelial cells to Fas-mediated apoptosis by IFN-gamma/IL-1beta was significantly blocked by a general caspase inhibitor, z-VAD, or by the combination of two specific individual caspase inhibitors. In addition, our results showed that IFN-gamma/IL-1beta enhance p38 MAPK phosphorylation and that SB 203580, a p38 MAPK inhibitor, can inhibit IFN-gamma/IL-1beta-induced p38 MAPK phosphorylation. SB 203580 also significantly prevented cytokine-induced iNOS expression and caspase activation and thus blocked Fas-mediated apoptosis of thyroid cells sensitized by IFN-gamma/IL-1beta. In conclusion, our data suggest that both p38 MAPK and iNOS are involved in IFN-gamma/IL-1beta-induced sensitization of the thyroid cells to Fas-mediated apoptosis via the activation of caspases 3, 7, and 10 and that this pathway may be further activated by BID. This hints that inflammatory cytokines regulate death-receptor-mediated apoptosis at multiple points in the process.
Insights
Inflammatory cytokines like interferon-gamma (IFN-gamma) and IL-1beta sensitize thyroid cells to Fas-mediated apoptosis by activating p38 MAPK and iNOS pathways. This research clarifies the molecular mechanisms behind autoimmune thyroid disease pathogenesis.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Autoimmune thyroid diseases involve Fas-mediated apoptosis.
- Normal thyroid cells resist Fas-mediated apoptosis.
- Interferon-gamma (IFN-gamma) and IL-1beta overcome this resistance.
Purpose of the Study:
- To elucidate the molecular mechanisms of IFN-gamma/IL-1beta-induced sensitization of thyroid cells to Fas-mediated apoptosis.
- To identify key molecular players in this sensitization process.
Main Methods:
- cDNA microarrays to profile gene transcription.
- Real-time PCR and Western blot for validation.
- Inhibition studies using caspase and p38 MAPK inhibitors (z-VAD, SB 203580).
Main Results:
- IFN-gamma/IL-1beta significantly increased apoptosis-related genes (iNOS, RIP2, caspases 10).
- Cytokine treatment enhanced p38 MAPK phosphorylation.
- Inhibitors blocked cytokine-induced iNOS expression, caspase activation, and Fas-mediated apoptosis.
- The pathway involves p38 MAPK, iNOS, caspases (3, 7, 10), and potentially BID.
Conclusions:
- p38 MAPK and iNOS are crucial in IFN-gamma/IL-1beta-induced sensitization of thyroid cells to Fas-mediated apoptosis.
- This pathway involves caspase activation and may be regulated by BID.
- Inflammatory cytokines modulate death-receptor-mediated apoptosis at multiple levels.
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