Distinct Treg subsets in human peripheral blood are defined by unique transcriptomic signatures 2252633
Abstract
Abstract Introduction Regulatory CD4+ T cells (Tregs) are critical for maintaining tolerance to self. Chronic inflammation can cause Treg instability which is defined by loss of CD25 and the lineage-defining transcription factor FOXP3, resulting in exTreg cells. Methods To better understand the factors driving Treg to exTreg conversion, we analyzed transcriptomes of Treg subsets expressing varied levels of CD25 and FOXP3 in human peripheral blood CD4+ T cells. Results We found differential expression of genes related to inflammatory signaling (IFNG, TNF), cytotoxicity (PRF1, GZMB) and cellular stress (HSPA5). This was confirmed at the protein level by flow cytometry. Distinct Treg populations were also defined by unique metabolic profiles suggesting a role of cell-intrinsic metabolic programs in maintaining Treg stability. Conclusion Our findings start to define novel cellular pathways contributing to Treg homeostasis and instability in human peripheral blood. Funding Source We acknowledge the support from National Institutes of Health (awards P01 HL136275 and R35 HL145241) to K.L. Topic Categories Lymphocyte Differentiation and Peripheral Maintenance (LYM)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (10)
Smriti Parashar
Immunology Center of Georgia, Augusta University , GA,
Payel Roy
Immunology Center of Georgia, Augusta University, GA, USA and Indian Institute of Science , Bangalore,
Mohammad Oliaeimotlagh
Immunology Center of Georgia, Augusta University, GA, USA and Perelman School of Medicine, University of Pennsylvania , PA,
Anusha Bellapu
Immunology Center of Georgia, Augusta University , GA,
Lauren Fogel
Immunology Center of Georgia, Augusta University , GA,
Qingkang Lyu
Yan Wang
Devadatta Gosavi
Immunology Center of Georgia, Augusta University , GA,
Martina Zoccheddu
Immunology Center of Georgia, Augusta University , GA,
Klaus Ley