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A High Resolution Method to Monitor Phosphorylation-dependent Activation of IRF3
Published on: January 24, 2016
The IRF-3 transcription factor mediates Sendai virus-induced apoptosis
C Heylbroeck1, S Balachandran, M J Servant
1Terry Fox Molecular Oncology Group, Lady Davis Institute for Medical Research, Sir Mortimer B. Davis Jewish General Hospital, Montreal, Quebec, Canada H3T 1E2.
Abstract:
Virus infection of target cells can result in different biological outcomes: lytic infection, cellular transformation, or cell death by apoptosis. Cells respond to virus infection by the activation of specific transcription factors involved in cytokine gene regulation and cell growth control. The ubiquitously expressed interferon regulatory factor 3 (IRF-3) transcription factor is directly activated following virus infection through posttranslational modification. Phosphorylation of specific C-terminal serine residues results in IRF-3 dimerization, nuclear translocation, and activation of DNA-binding and transactivation potential. Once activated, IRF-3 transcriptionally up regulates alpha/beta interferon genes, the chemokine RANTES, and potentially other genes that inhibit viral infection. We previously generated constitutively active [IRF-3(5D)] and dominant negative (IRF-3 DeltaN) forms of IRF-3 that control target gene expression. In an effort to characterize the growth regulatory properties of IRF-3, we observed that IRF-3 is a mediator of paramyxovirus-induced apoptosis. Expression of the constitutively active form of IRF-3 is toxic, preventing the establishment of stably transfected cells. By using a tetracycline-inducible system, we show that induction of IRF-3(5D) alone is sufficient to induce apoptosis in human embryonic kidney 293 and human Jurkat T cells as measured by DNA laddering, terminal deoxynucleotidyltransferase-mediated dUTP-biotin nick end labeling assay, and analysis of DNA content by flow cytometry. Wild-type IRF-3 expression augments paramyxovirus-induced apoptosis, while expression of IRF-3 DeltaN blocks virus-induced apoptosis. In addition, we demonstrate an important role of caspases 8, 9, and 3 in IRF-3-induced apoptosis. These results suggest that IRF-3, in addition to potently activating cytokine genes, regulates apoptotic signalling following virus infection.
Insights
Interferon regulatory factor 3 (IRF-3) mediates virus-induced apoptosis. Constitutively active IRF-3 triggers cell death, while dominant-negative IRF-3 inhibits it, highlighting IRF-3
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Virus infection triggers cellular responses including apoptosis, involving transcription factors like interferon regulatory factor 3 (IRF-3).
- IRF-3 is activated by viral infection via post-translational modification, leading to dimerization, nuclear translocation, and transcriptional activation of antiviral genes.
- Previous studies generated constitutively active [IRF-3(5D)] and dominant-negative (IRF-3 DeltaN) IRF-3 forms to study its functions.
Purpose of the Study:
- To investigate the role of IRF-3 in regulating cell growth and mediating virus-induced apoptosis.
- To characterize the apoptotic effects of constitutively active IRF-3 and the inhibitory effects of dominant-negative IRF-3.
Main Methods:
- Utilized a tetracycline-inducible system to control the expression of IRF-3(5D) in human embryonic kidney 293 and Jurkat T cells.
- Assessed apoptosis using DNA laddering, terminal deoxynucleotidyltransferase-mediated dUTP-biotin nick end labeling (TUNEL) assay, and flow cytometry.
- Examined the involvement of caspases 8, 9, and 3 in IRF-3-mediated apoptosis.
Main Results:
- Induction of IRF-3(5D) alone was sufficient to induce apoptosis in tested human cell lines.
- Wild-type IRF-3 enhanced paramyxovirus-induced apoptosis, whereas IRF-3 DeltaN inhibited it.
- Caspases 8, 9, and 3 were identified as crucial components in IRF-3-induced apoptosis.
Conclusions:
- IRF-3 plays a significant role in regulating apoptotic signaling pathways following viral infection.
- IRF-3 acts as a mediator of paramyxovirus-induced apoptosis, in addition to its known role in cytokine gene regulation.
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