Trans-ned 19-mediated antagonism of nicotinic acid adenine nucleotide—mediated calcium signaling regulates th17 cell plasticity in mice

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Abstract

Nicotinic acid adenine dinucleotide phosphate (NAADP) is the most potent Ca2+ mobilizing agent and its inhibition proved to inhibit T-cell activation. However, the impact of the NAADP signaling on CD4+ T-cell differentiation and plasticity and on the inflammation in tissues other than the central nervous system remains unclear. In this study, we used an antagonist of NAADP signaling, trans-Ned 19, to study the role of NAADP in CD4+ T-cell differentiation and effector function. Partial blockade of NAADP signaling in naïve CD4+ T cells in vitro promoted the differentiation of Th17 cells. Interestingly, trans-Ned 19 also promoted the production of IL-10, co-expression of LAG-3 and CD49b and increased the suppressive capacity of Th17 cells. Moreover, using an IL-17A fate mapping mouse model, we showed that NAADP inhibition promotes conversion of Th17 cells into regulatory T cells in vitro and in vivo. In line with the results, we found that inhibiting NAADP ameliorates disease in a mouse model of intestinal inflammation. Thus, these results reveal a novel function of NAADP in controlling the differentiation and plasticity of CD4+ T cells.

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Nawrocki, M., Lory, N., Bedke, T., Stumme, F., Diercks, B. P., Guse, A. H., … Huber, S. (2021). Trans-ned 19-mediated antagonism of nicotinic acid adenine nucleotide—mediated calcium signaling regulates th17 cell plasticity in mice. Cells, 10(11). https://doi.org/10.3390/cells10113039

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