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Accelerated Type 1 Diabetes Induction in Mice by Adoptive Transfer of Diabetogenic CD4+ T Cells
Published on: May 6, 2013
Stat4-null non-obese diabetic mice: protection from diabetes and experimental allergic encephalomyelitis, but with
Rosemary J Boyton1, Selina Davies, Chloe Marden
1Department of Infectious Diseases and Transplantation Biology Group, Medical Research Council, Clinical Sciences Centre, Faculty of Medicine, Imperial College London, Hammersmith Hospital, Du Cane Road, London W12 ONN, UK.
Abstract:
There is much interest in therapeutic manipulation of cytokine responses in autoimmunity, yet studies in mouse models have sometimes produced conflicting findings as to the role of particular mediators in disease. Examples include the contradictory findings regarding susceptibility to experimental allergic encephalomyelitis (EAE) or diabetes in knockout mice for various individual Th1 or Th2 cytokines or their receptors. An alternative approach to the analysis of Th1 and Th2 mechanisms in these diseases is to investigate strains carrying a null mutation for molecules involved in cytokine receptor signal transduction, signal transducer and activator of transcription (Stat4) and Stat6. Stat4 is pivotal in Th1 polarization, being activated when IL-12 binds the IL-12R and leading to the production of IFNgamma. We here report disease susceptibility in non-obese diabetic mice carrying a Stat4-null mutation. Knockout mice were almost completely protected from diabetes, only rarely showing pancreatic peri-islet infiltrates. Furthermore, there was near complete protection from the induction of EAE by either of the two encephalitogenic myelin epitopes. Despite this protection, Stat4-null mice showed clear epitope spread compared with controls during myelin oligodendrocyte glycoprotein-induced EAE as judged by T cell proliferation, although this was not associated with a strong Th1 response to the initial or spread epitope and, furthermore, there was no evidence of a switch to Th2 cytokines.
Insights
Signal transducer and activator of transcription 4 (Stat4) deficiency protects against autoimmune diseases like diabetes and experimental allergic encephalomyelitis (EAE) in mice. This finding offers new therapeutic targets for autoimmune conditions.
Area of Science:
- Immunology
- Autoimmunity
- Molecular Biology
Background:
- Conflicting findings exist regarding the role of specific cytokines in autoimmune diseases like EAE and diabetes.
- Investigating signal transduction pathways offers an alternative approach to understanding Th1 and Th2 mechanisms in autoimmunity.
Purpose of the Study:
- To investigate the role of signal transducer and activator of transcription 4 (Stat4) in autoimmune disease susceptibility.
- To analyze the impact of Stat4 deficiency on diabetes and experimental allergic encephalomyelitis (EAE) in non-obese diabetic mice.
Main Methods:
- Generation and analysis of Stat4-null non-obese diabetic mice.
- Induction of experimental allergic encephalomyelitis (EAE) using encephalitogenic myelin epitopes.
- Assessment of disease incidence, pancreatic infiltrates, and T cell proliferation.
Main Results:
- Stat4-null mice were nearly completely protected from developing diabetes.
- Near-complete protection from EAE induction was observed in Stat4-null mice.
- Despite protection, Stat4-null mice exhibited epitope spread in EAE, without a strong Th1 response or Th2 cytokine switch.
Conclusions:
- Stat4 plays a critical role in the pathogenesis of autoimmune diseases, including diabetes and EAE.
- Targeting Stat4 signaling presents a potential therapeutic strategy for autoimmune disorders.
- Stat4 deficiency impacts autoimmune responses, including epitope spread, independent of classical Th1/Th2 polarization.
