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Published on: January 12, 2020
1,25-dihydroxyvitamin D3 impairs NF-κB activation in human naïve B cells
Kerstin Geldmeyer-Hilt1, Guido Heine, Björn Hartmann
1Allergie-Centrum-Charité, CCM, Klinik für Dermatologie und Allergologie, Charité - Universitätsmedizin Berlin, Charitéplatz 1, 10117 Berlin, Germany. kerstin.hilt@charite.de
Abstract:
1α,25-dihydroxyvitamin D(3) (calcitriol), the bioactive metabolite of vitamin D, modulates the activation and inhibits IgE production of anti-CD40 and IL-4 stimulated human peripheral B cells. Engagement of CD40 results in NF-κB p50 activation, which is essential for the class switch to IgE. Herein, we investigated by which mechanism calcitriol modulates NF-κB mediated activation of human naïve B cells. Naïve B cells were predominantly targeted by calcitriol in comparison with memory B cells as shown by pronounced induction of the VDR target gene cyp24a1. Vitamin D receptor activation resulted in a strongly reduced p105/p50 protein and mRNA expression in human naïve B cells. This effect is mediated by impaired nuclear translocation of p65 and consequently reduced binding of p65 to its binding site in the p105 promoter. Our data indicate that the vitamin D receptor reduces NF-κB activation by interference with NF-κB p65 and p105. Thus, the vitamin D receptor inhibits costimulatory signal transduction in naïve B cells, namely by reducing CD40 signaling.
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