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Adenoviral Transduction of Naive CD4 T Cells to Study Treg Differentiation
Published on: August 13, 2013
An essential role for miR-15/16 in Treg suppression and restriction of proliferation
Abstract:
The miR-15/16 family is a highly expressed group of tumor suppressor miRNAs that target a large network of genes in T cells to restrict their cell cycle, memory formation and survival. Upon T cell activation, miR-15/16 are downregulated, allowing rapid expansion of differentiated effector T cells to mediate a sustained immune response. Here, using conditional deletion of miR-15/16 in immunosuppressive regulatory T cells (Tregs) that express FOXP3, we identify new functions of the miR-15/16 family in T cell immunity. miR-15/16 are indispensable to maintain peripheral tolerance by securing efficient suppression by a limited number of Tregs. miR-15/16-deficiency alters Treg expression of critical functional proteins including FOXP3, IL2Rα/CD25, CTLA4, PD-1 and IL7Rα/CD127, and results in accumulation of functionally impaired FOXP3loCD25loCD127hi Tregs. Excessive proliferation in the absence of miR-15/16 inhibition of cell cycle programs shifts Treg diversity and produces an effector Treg phenotype characterized by low expression of TCF1, CD25 and CD62L, and high expression of CD44. These Tregs fail to control immune activation of CD4+ effector T cells, leading to spontaneous multi-organ inflammation and increased allergic airway inflammation in a mouse model of asthma. Together, our results demonstrate that miR-15/16 expression in Tregs is essential to maintain immune tolerance.
Insights
The miR-15/16 microRNA family is crucial for maintaining immune tolerance by regulating regulatory T cells (Tregs). Loss of miR-15/16 in Tregs impairs their function, leading to inflammation and autoimmune disease.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- The miR-15/16 family acts as tumor suppressors in T cells, regulating cell cycle, memory, and survival.
- Downregulation of miR-15/16 upon T cell activation permits effector T cell expansion for immune responses.
Approach:
- Conditional deletion of miR-15/16 in FOXP3-expressing regulatory T cells (Tregs).
- Analysis of Treg phenotype, gene expression, and function.
- Assessment of immune response and inflammation in a mouse model.
Key Points:
- miR-15/16 are essential for maintaining peripheral tolerance by ensuring Treg suppressive function.
- miR-15/16 deficiency in Tregs alters expression of key proteins (FOXP3, CD25, CTLA4, PD-1, CD127) and leads to functionally impaired Tregs.
- Loss of miR-15/16 results in an effector Treg phenotype, uncontrolled T cell activation, multi-organ inflammation, and exacerbated allergic airway inflammation.
Conclusions:
- miR-15/16 expression within Tregs is vital for immune homeostasis.
- Dysregulation of miR-15/16 in Tregs contributes to inflammatory and autoimmune conditions.
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