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Mouse Naïve CD4+ T Cell Isolation and In vitro Differentiation into T Cell Subsets
Published on: April 16, 2015
Interferons mediate terminal differentiation of human cortical thymic epithelial cells
Pierre-Olivier Vidalain1, David Laine, Yona Zaffran
1Laboratoire d'Immunobiologie Fondamentale et Clinique, INSERM U503, 21 Avenue Tony Garnier, 69365 Lyon Cedex 07, France.
Insights
Measles virus triggers thymic epithelial cell differentiation and apoptosis via beta interferon (IFN-beta) secretion. Interferons can induce thymic atrophy and impair T-cell lymphopoiesis during infections.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Thymic epithelial cells are crucial for T-cell development.
- Viral infections can disrupt the thymus, impacting T-cell lymphopoiesis.
- Previous work showed measles virus induces thymic epithelial cell differentiation, apoptosis, and growth arrest.
Purpose of the Study:
- To elucidate the mechanisms behind measles virus-induced thymic epithelial cell differentiation.
- To investigate the role of interferons in this process.
- To understand how viral infections may lead to thymic atrophy.
Main Methods:
- In vitro analysis of measles virus-infected thymic epithelial cells.
- Transfection with double-stranded RNA.
- Treatment with recombinant interferons (IFN-alpha, IFN-beta, IFN-gamma).
Main Results:
- Measles virus-induced thymic epithelial cell differentiation is dependent on beta interferon (IFN-beta) secretion.
- Double-stranded RNA induces thymic epithelial cell differentiation via IFN-beta.
- Recombinant interferons induce differentiation and apoptosis in uninfected thymic epithelial cells.
Conclusions:
- Interferon secretion is a key mechanism in viral-induced thymic epithelial cell disruption.
- Interferons may mediate thymic atrophy and altered T-cell lymphopoiesis during infections.
- This pathway contributes to immune dysregulation in viral infections.
Abstract:
In the thymus, epithelial cells comprise a heterogeneous population required for the generation of functional T lymphocytes, suggesting that thymic epithelium disruption by viruses may compromise T-cell lymphopoiesis in this organ. In a previous report, we demonstrated that in vitro, measles virus induced differentiation of cortical thymic epithelial cells as characterized by (i) cell growth arrest, (ii) morphological and phenotypic changes, and (iii) apoptotis as a final step of this process. In the present report, we have analyzed the mechanisms involved. First, measles virus-induced differentiation of thymic epithelial cells is shown to be strictly dependent on beta interferon (IFN-beta) secretion. In addition, transfection with double-stranded RNA, a common intermediate of replication for a broad spectrum of viruses, is reported to similarly mediate thymic epithelial cell differentiation through IFN-beta induction. Finally, we demonstrated that recombinant IFN-alpha, IFN-beta, or IFN-gamma was sufficient to induce differentiation and apoptosis of uninfected thymic epithelial cells. These observations suggested that interferon secretion by either infected cells or activated leukocytes, such as plasmacytoid dendritic cells or lymphocytes, may induce thymic epithelium disruption in a pathological context. Thus, we have identified a new mechanism that may contribute to thymic atrophy and altered T-cell lymphopoiesis associated with many infections.
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