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Publication : Fatal autoimmunity results from the conditional deletion of Snai2 and Snai3.

First Author  Pioli PD Year  2015
Journal  Cell Immunol Volume  295
Issue  1 Pages  1-18
PubMed ID  25732600 Mgi Jnum  J:219190
Mgi Id  MGI:5619845 Doi  10.1016/j.cellimm.2015.02.009
Citation  Pioli PD, et al. (2015) Fatal autoimmunity results from the conditional deletion of Snai2 and Snai3. Cell Immunol 295(1):1-18
abstractText  Transcriptional regulation of gene expression is a key component of orchestrating proper immune cell development and function. One strategy for maintaining these transcriptional programs has been the evolution of transcription factor families with members possessing overlapping functions. Using the germ line deletion of Snai2 combined with the hematopoietic specific deletion of Snai3, we report that these factors function redundantly to preserve the development of B and T cells. Such animals display severe lymphopenia, alopecia and dermatitis as well as profound autoimmunity manifested by the production of high levels of autoantibodies as early as 3weeks of age and die by 30days after birth. Autoantibodies included both IgM and IgG isotypes and were reactive against cytoplasmic and membranous components. A regulatory T cell defect contributed to the autoimmune response in that adoptive transfer of wild type regulatory T cells alleviated symptoms of autoimmunity. Additionally, transplantation of Snai2/Snai3 double deficient bone marrow into Snai2 sufficient Rag2-/- recipients resulted in autoantibody generation. The results demonstrated that appropriate expression of Snai2 and Snai3 in cells of hematopoietic derivation plays an important role in development and maintenance of immune tolerance.
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