TCR Transgenic Mice Reveal Stepwise, Multi-site Acquisition of the Distinctive Fat-Treg Phenotype.
| Citation | Li, Chaoran, et al. “TCR Transgenic Mice Reveal Stepwise, Multi-Site Acquisition of the Distinctive Fat-Treg Phenotype”. 2018. Cell, vol. 174, no. 2, 2018, pp. 285–299.e12.  | 
       
| Center | Joslin Diabetes Center | 
| Author | Chaoran Li, Joanna R Dispirito, David Zemmour, Raul German Spallanzani, Wilson Kuswanto, Christophe Benoist, Diane Mathis | 
| Keywords | Foxp3, IL-33, PPARγ, TCR transgenic mice, Adipose tissue, immunometabolism, immunoregulation, regulatory T cell | 
| Abstract | 
   Visceral adipose tissue (VAT) hosts a population of regulatory T (Treg) cells, with a unique phenotype, that controls local and systemic inflammation and metabolism. Generation of a T cell receptor transgenic mouse line, wherein VAT Tregs are highly enriched, facilitated study of their provenance, dependencies, and activities. We definitively established a role for T cell receptor specificity, uncovered an unexpected function for the primordial Treg transcription-factor, Foxp3, evidenced a cell-intrinsic role for interleukin-33 receptor, and ordered these dependencies within a coherent scenario. Genesis of the VAT-Treg phenotype entailed a priming step in the spleen, permitting them to exit the lymphoid organs and surveil nonlymphoid tissues, and a final diversification process within VAT, in response to microenvironmental cues. Understanding the principles of tissue-Treg biology is a prerequisite for precision-targeting strategies.  | 
        
| Year of Publication | 
   2018 
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| Journal | 
   Cell 
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| Volume | 
   174 
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| Issue | 
   2 
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| Number of Pages | 
   285-299.e12 
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| Date Published | 
   12/2018 
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| ISSN Number | 
   1097-4172 
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| DOI | 
   10.1016/j.cell.2018.05.004 
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| Alternate Journal | 
   Cell 
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| PMCID | 
   PMC6046274 
           | 
        
| PMID | 
   29887374 
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