Vuica M, Desiderio S, Schneck J P
Department of Pathology and Medicine, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
J Exp Med. 1997 Jul 21;186(2):259-67. doi: 10.1084/jem.186.2.259.
The stimulatory and inhibitory pathways initiated by engagement of stimulatory receptors such as the B cell receptor for antigen (BCR) and inhibitory receptors such as Fcgamma receptors of the IIB1 type (FcgammaRIIB1) intersect in ways that are poorly understood at the molecular level. Because the tyrosine kinase Csk is a potential negative regulator of lymphocyte activation, we examined the effects of BCR and FcgammaRIIB1 engagement on the binding of Csk to phosphotyrosine-containing proteins. Stimulation of a B lymphoma cell line, A20, with intact anti-IgG antibody induced a direct, SH2-mediated association between Csk and a 62-kD phosphotyrosine-containing protein that was identified as RasGTPase-activating protein-associated p62 (GAP-A.p62). In contrast, stimulation of A20 cells with anti-IgG F(ab')2 resulted in little increase in the association of Csk with GAP-A.p62. The effect of FcgammaRIIB1 engagement on this association was abolished by blockade of FcgammaRIIB1 with the monoclonal antibody 2.4G2. Furthermore, the increased association between Csk and GAP-A.p62 seen upon stimulation with intact anti-Ig was abrogated in the FcgammaRIIB1-deficient cell line IIA1.6 and recovered when FcgammaRIIB1 expression was restored by transfection. The differential effects of BCR and BCR-FcgammaRIIB1-mediated signaling on the phosphorylation of GAP-A.p62 and its association with Csk suggest that docking of Csk to GAP-A.p62 may function in the negative regulation of antigen receptor-mediated signals in B cells.
由刺激性受体(如抗原的B细胞受体,即BCR)和抑制性受体(如IIB1型Fcγ受体,即FcγRIIB1)的结合所启动的刺激性和抑制性信号通路,其相互作用方式在分子水平上仍知之甚少。由于酪氨酸激酶Csk是淋巴细胞激活的潜在负调节因子,我们研究了BCR和FcγRIIB1的结合对Csk与含磷酸酪氨酸蛋白结合的影响。用完整的抗IgG抗体刺激B淋巴瘤细胞系A20,诱导了Csk与一种62-kD含磷酸酪氨酸蛋白之间直接的、由SH2介导的结合,该蛋白被鉴定为RasGTP酶激活蛋白相关的p62(GAP-A.p62)。相比之下,用抗IgG F(ab')2刺激A20细胞,Csk与GAP-A.p62的结合几乎没有增加。用单克隆抗体2.4G2阻断FcγRIIB1后,FcγRIIB1结合对这种结合的影响被消除。此外,在用完整抗Ig刺激时观察到的Csk与GAP-A.p62之间增加的结合,在FcγRIIB1缺陷的细胞系IIA1.6中被消除,而当通过转染恢复FcγRIIB1表达时又恢复。BCR和BCR-FcγRIIB1介导的信号对GAP-A.p62磷酸化及其与Csk结合的不同影响表明,Csk与GAP-A.p62的对接可能在B细胞中抗原受体介导信号的负调节中起作用。