Targeted nanopore DNA sequencing of mouse naive CD4 T cells activated under Treg polarizing conditions
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Suppressive regulatory T cell (Treg) differentiation is controlled by diverse immunometabolic signaling pathways and intracellular metabolites. Here we show that cell-permeable α-ketoglutarate (αKG) alters the DNA methylation profile of naive CD4 T cells activated under Treg polarizing conditions, markedly attenuating FoxP3+ Treg differentiation and increasing inflammatory cytokines. 5-methylcytosine (5mC) was studied in two independent experiments with 3 conditions each: thymic Tregs (tTregs), and in vitro CD4 T cells differentiated under Treg polarizing conditions (Tregs) with or without treatment with dimethyl ketoglutarate (DMK). Samples within each experiment were barcoded and multiplexed before Cas9 enrichment and nanopore sequencing.



