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Activation of the STAT signaling pathway can cause expression of caspase 1 and apoptosis
Y E Chin1, M Kitagawa, K Kuida
1Department of Pathology, Yale University School of Medicine, New Haven, Connecticut 06520-8023, USA.
Abstract:
Protein tyrosine kinases activate the STAT (signal transducer and activator of transcription) signaling pathway, which can play essential roles in cell differentiation, cell cycle control, and development. However, the potential role of the STAT signaling pathway in the induction of apoptosis remains unexplored. Here we show that gamma interferon (IFN-gamma) activated STAT1 and induced apoptosis in both A431 and HeLa cells, whereas epidermal growth factor (EGF) activated STAT proteins and induced apoptosis in A431 but not in HeLa cells. EGF receptor autophosphorylation and mitogen-activated protein kinase activation in response to EGF were similar in both cell lines. The breast cancer cell line MDA-MB-468 exhibited a similar response to A431 cells, i.e., STAT activation and apoptosis correlatively resulted from EGF or IFN-gamma treatment. In addition, in a mutant A431 cell line in which STAT activation was abolished, no apoptosis was induced by either EGF or IFN-gamma. We further demonstrated that both EGF and IFN-gamma induced caspase 1 (interleukin-1beta converting enzyme [ICE]) gene expression in a STAT-dependent manner. IFN-gamma was unable to induce ICE gene expression and apoptosis in either JAK1-deficient HeLa cells (E2A4) or STAT1-deficient cells (U3A). However, ICE gene expression and apoptosis were induced by IFN-gamma in U3A cells into which STAT1 had been reintroduced. Moreover, both EGF-induced apoptosis and IFN-gamma-induced apoptosis were effectively blocked by Z-Val-Ala-Asp-fluoromethylketone (ZVAD) in all the cells tested, and studies from ICE-deficient cells indicated that ICE gene expression was necessary for IFN-gamma-induced apoptosis. We conclude that activation of the STAT signaling pathway can induce apoptosis through the induction of ICE gene expression.
Insights
The STAT signaling pathway, activated by interferon-gamma and epidermal growth factor, induces apoptosis by upregulating caspase-1 (ICE) gene expression in a STAT-dependent manner. This pathway is crucial for programmed cell death induction.
Area of Science:
- Cell Biology
- Molecular Biology
- Signal Transduction
Background:
- Protein tyrosine kinases activate the STAT signaling pathway, essential for cell differentiation, cell cycle control, and development.
- The role of STAT signaling in apoptosis induction was previously unexplored.
Purpose of the Study:
- To investigate the role of the STAT signaling pathway in apoptosis induction.
- To determine the mechanism by which STAT activation leads to apoptosis.
Main Methods:
- Utilized A431, HeLa, MDA-MB-468 cell lines, and STAT-deficient/reconstituted cell lines.
- Stimulated cells with interferon-gamma (IFN-gamma) and epidermal growth factor (EGF).
- Assessed STAT activation, apoptosis, caspase-1 (ICE) gene expression, and EGF receptor signaling.
Main Results:
- IFN-gamma and EGF activated STAT proteins, inducing apoptosis in a cell-type-dependent manner.
- STAT activation was essential for EGF- and IFN-gamma-induced apoptosis.
- Both EGF and IFN-gamma induced caspase-1 (ICE) gene expression in a STAT-dependent manner, which was necessary for apoptosis.
Conclusions:
- STAT signaling pathway activation can induce apoptosis through the induction of caspase-1 (ICE) gene expression.
- This finding elucidates a novel mechanism of apoptosis regulation by the STAT pathway.