Role of interleukin 2 on chromatin landscapes in lymph node Foxp3+ CD4+ regulatory (Treg) cells
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https://www.ncbi.nlm.nih.gov/sra/SRP116329
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Interleukine 2 (IL-2) is still one of the most interesting cytokines in T cell biology with its ability to control immune homeostasis by maintaining the functional identity of Foxp3+ regulatory T (Treg) cells and the expansion of activated conventional T (Tconv) cells. Yet, how IL-2 exactly enables Treg cells to suppress autoreactive Tconv cells and to maintain their identity is unclear. Using a mouse model in which IL-2 signaling via its high affinity receptor CD25 is selectively impaired, the âIl2ramut/mutâ mouse, we report that Treg cells that only receive low IL-2 signals keep Il2ramut/mut but not WT Tconv cells âin checkâ, suggesting equal IL-2 signals in Treg and Tconv cells is essential to safeguard immune homeostasis. Furthermore, the comparative analysis of gene expression and epigenetic landscape of Il2ramut/mut and WT Treg cells support a model in which IL-2 "locks inâ Treg cell identity and functions in vivo by controlling their genome-wide chromatin accessibility. Overall design: LNs from 6-8 weeks old aged-matched females either Il2ramut/mut (2 mice) or WT (2 mice) Foxp3-RFP+ reporter mice were harvested and RFP+ Treg cells were enriched by negative selection (dynabeads) and flow-sorted (Aria III) before proceeding to extraction of nuclei, transposition and library preparation for sequencing (ATAC-seq).
创建时间:
2021-07-25



