The essential role of store-operated Ca2+ entry (SOCE) through Ca2+ release-activated Ca2+(CRAC) channels in T cells is well established. In contrast, the contribution of individual Orai isoforms to SOCE and their downstream signaling functions in B cells are poorly understood. Here, we demonstrate changes in expression of Orai isoforms in response to B cell activation. We show that both Orai3 and Orai1 mediate native CRAC channels in B cells. The combined loss of Orai1 and Orai3, but not Orai3 alone, impairs SOCE, proliferation and survival, nuclear factor of activated T cells (NFAT) activation, mitochondrial respiration, glycolysis, and the metabolic reprogramming of primary B cells in response to antigenic stimulation. Nevertheless, combined deletion of Orai1 and Orai3 in B cells did not compromise humoral immunity to influenza A virus infection in mice, suggesting that other in vivo co-stimulatory signals can overcome the requirement of BCR-mediated CRAC channel function in B cells. Our results shed important new light on the physiological roles of Orai1 and Orai3 proteins in SOCE and effector functions of B lymphocytes.
CITATION STYLE
Emrich, S. M., Yoast, R. E., Zhang, X., Fike, A. J., Wang, Y. H., Bricker, K. N., … Trebak, M. (2023). Orai3 and orai1 mediate crac channel function and metabolic reprogramming in b cells. ELife, 12. https://doi.org/10.7554/eLife.84708
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