Hashimoto A, Hirose K, Kurosaki T, Iino M
Department of Pharmacology, Graduate School of Medicine, University of Tokyo, Japan.
J Immunol. 2001 Jan 15;166(2):1003-8. doi: 10.4049/jimmunol.166.2.1003.
An increase in the intracellular Ca(2+) concentration by B cell receptor (BCR) cross-linking plays important roles in the regulation of B cell functions. Ca(2+) is regulated by Ca(2+) release from the Ca(2+) store as well as store-operated Ca(2+) influx (SOC). Protein tyrosine kinases downstream of BCR cross-linking were shown to regulate the mechanism for Ca(2+) release. However, it remains elusive whether BCR cross-linking regulates SOC or not. In this study, we examined the effect of BCR cross-linking on thapsigargin-induced SOC in the DT40 B cells. We found that the SOC-mediated increase in intracellular Ca(2+) concentration was inhibited by BCR cross-linking. Using a membrane-potential-sensitive dye, we found that BCR cross-linking induced depolarization, which is expected to decrease the driving force of Ca(2+) influx and SOC channel conductance. When membrane potential was held constant by the transmembrane K(+) concentration gradient in the presence of valinomycin, the BCR-mediated inhibition of SOC was still observed. Thus, the BCR-mediated inhibition of SOC involves both depolarization-dependent and depolarization-independent mechanisms of SOC inhibition. The depolarization-independent inhibition of the SOC was abolished in Lyn-deficient, but not in Bruton's tyrosine kinase-, Syk- or SHIP (Src homology 2 domain containing phosphatidylinositol 5'-phosphatase)-deficient cells, indicating that Lyn is involved in the inhibition. These results show novel pathways of BCR-mediated SOC regulations.
通过B细胞受体(BCR)交联导致的细胞内Ca(2+)浓度升高在B细胞功能调节中发挥重要作用。[Ca(2+)]i受Ca(2+)从钙库释放以及钙库操纵的Ca(2+)内流(SOC)调节。已表明BCR交联下游的蛋白酪氨酸激酶调节Ca(2+)释放机制。然而,BCR交联是否调节SOC仍不清楚。在本研究中,我们检测了BCR交联对毒胡萝卜素诱导的DT40 B细胞中SOC的影响。我们发现BCR交联抑制了SOC介导的细胞内Ca(2+)浓度升高。使用膜电位敏感染料,我们发现BCR交联诱导去极化,这预计会降低Ca(2+)内流的驱动力和SOC通道电导。当在缬氨霉素存在下通过跨膜K(+)浓度梯度使膜电位保持恒定时,仍观察到BCR介导的对SOC的抑制。因此,BCR介导的对SOC的抑制涉及SOC抑制的去极化依赖性和去极化非依赖性机制。在Lyn缺陷细胞中,SOC的去极化非依赖性抑制被消除,但在布鲁顿酪氨酸激酶、Syk或SHIP(含Src同源2结构域的磷脂酰肌醇5'-磷酸酶)缺陷细胞中未被消除,表明Lyn参与了这种抑制。这些结果显示了BCR介导的SOC调节的新途径。