Glycolysis controls the induction of human regulatory T cells by modulating the expression of FOXP3 exon 2 splicing variants

糖酵解通过调节 FOXP3 外显子 2 剪接变体的表达来控制人类调节性 T 细胞的诱导

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作者:Veronica De Rosa, Mario Galgani, Antonio Porcellini, Alessandra Colamatteo, Marianna Santopaolo, Candida Zuchegna, Antonella Romano, Salvatore De Simone, Claudio Procaccini, Claudia La Rocca, Pietro Biagio Carrieri, Giorgia Teresa Maniscalco, Marco Salvetti, Maria Chiara Buscarinu, Adriana Franzese,

Abstract

Human regulatory T cells (T(reg) cells) that develop from conventional T cells (T(conv) cells) following suboptimal stimulation via the T cell antigen receptor (TCR) (induced T(reg) cells (iT(reg) cells)) express the transcription factor Foxp3, are suppressive, and display an active proliferative and metabolic state. Here we found that the induction and suppressive function of iT(reg) cells tightly depended on glycolysis, which controlled Foxp3 splicing variants containing exon 2 (Foxp3-E2) through the glycolytic enzyme enolase-1. The Foxp3-E2-related suppressive activity of iT(reg) cells was altered in human autoimmune diseases, including multiple sclerosis and type 1 diabetes, and was associated with impaired glycolysis and signaling via interleukin 2. This link between glycolysis and Foxp3-E2 variants via enolase-1 shows a previously unknown mechanism for controlling the induction and function of T(reg) cells in health and in autoimmunity.

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