Hivroz C, Gény B, Brouet J C, Grillot-Courvalin C
Laboratory of Immunochemistry and Immunopathology, INSERM U. 108, Paris, France.
J Immunol. 1990 Mar 15;144(6):2351-8.
To further study the mechanisms by which surface Ig triggering activates the inositol phospholipid signaling pathway, we have used B cells from chronic lymphocytic leukemia patients which, as previously described, display two patterns of response upon sIg cross-linking: in one group this cross-linking induces an inositol phosphate release, an intracellular free Ca2+ concentration elevation and a subsequent cell proliferation; in a second group none of these events occur although there is an increased class II Ag expression following anti-mu stimulation as in the first group. We have been able to demonstrate that the phosphatidyl inositol specific phospholipase C (PI-PLC) can be activated in permeabilized B cells from the first group by direct stimulation, with GPT gamma S, of a guanine nucleotide binding (G) protein. In addition, since anti-mu + GTP gamma S stimulate an increased inositol phosphate production in these cells, this suggests that surface Ig cross-linking activates PI-PLC via a G protein. However, in cells from the second group no inositol phosphate is released after GTP gamma S stimulation although PI-PLC can be directly activated by high Ca2+ concentrations. This reflects in these cells, an interruption of the signaling cascade sIg/G protein/PI-PLC at the level of the G protein or at the G protein/PI-PLC coupling. In cells from both groups PMA treatment, which is known to alter phosphatidyl inositol metabolism in B cells, completely inhibits PI-PLC activation even by high Ca2+ concentrations. These studies show that the phosphatidyl inositol-dependent signaling cascade after surface Ig triggering can be altered at different levels in B cells.
为了进一步研究表面免疫球蛋白(sIg)触发激活肌醇磷脂信号通路的机制,我们使用了慢性淋巴细胞白血病患者的B细胞,如前所述,这些B细胞在sIg交联后呈现两种反应模式:在一组中,这种交联诱导肌醇磷酸释放、细胞内游离钙离子浓度升高以及随后的细胞增殖;在第二组中,尽管与第一组一样,抗μ刺激后II类抗原表达增加,但这些事件均未发生。我们已经能够证明,在第一组通透化的B细胞中,通过直接用鸟嘌呤核苷酸结合(G)蛋白的GPTγS刺激,可以激活磷脂酰肌醇特异性磷脂酶C(PI-PLC)。此外,由于抗μ+GPTγS刺激这些细胞中肌醇磷酸产量增加,这表明表面Ig交联通过G蛋白激活PI-PLC。然而,在第二组细胞中,GPTγS刺激后没有肌醇磷酸释放,尽管PI-PLC可以被高浓度的Ca2+直接激活。这反映在这些细胞中,信号级联sIg/G蛋白/PI-PLC在G蛋白水平或G蛋白/PI-PLC偶联处中断。在两组细胞中,已知能改变B细胞中磷脂酰肌醇代谢的佛波酯(PMA)处理,即使在高Ca2+浓度下也能完全抑制PI-PLC的激活。这些研究表明,表面Ig触发后磷脂酰肌醇依赖性信号级联在B细胞的不同水平上可能会发生改变。