Della Bianca V, Grzeskowiak M, Dusi S, Rossi F
Istituto di Patologia Generale, Università di Verona, Italy.
J Leukoc Biol. 1993 Apr;53(4):427-38. doi: 10.1002/jlb.53.4.427.
We have previously shown that in neutrophils classical transmembrane signaling consisting of increased [Ca2+]i and hydrolysis of phospholipids was not essential for phagocytosis mediated by more than one receptor (yeast-IgG, yeast-C3b/bi, yeast-Con A). This work deals with the role of this transmembrane signaling in phagocytosis of erythrocyte (E) IgG, which is mediated only by receptors for IgG (Fc gamma Rs). The ingestion of E-IgG was associated with an increase in [Ca2+]i and production of inositol phosphates, phosphatidic acid, diacylglycerol, and arachidonic acid, via activation of phospholipases C, D and A2. Related to the same number of particles ingested, the respiratory burst and the transmembrane signaling during phagocytosis of E-IgG were much smaller than during phagocytosis of yeast-IgG. In Ca(2+)-depleted neutrophils, where the increase in [Ca2+]i and hydrolysis of phospholipids were lacking, the phagocytosis of E-IgG was depressed by about 60%; the respiratory burst was also depressed due to the decrease of ingestion and of stimulation of NADPH oxidase by residual phagocytosis. Pertussis toxin (PT) did not inhibit the phagocytosis of E-IgG but depressed by about 40% the stimulation of lipidic transmembrane signaling and the respiratory burst in normal neutrophils. In Ca(2+)-depleted neutrophils the toxin was without effect on ingestion and respiratory burst. Staurosporine did not inhibit the ingestion of E-IgG in normal and Ca(2+)-depleted neutrophils but depressed by 30-40% the respiratory burst in normal and not in Ca(2+)-depleted neutrophils. Genistein, an inhibitor of tyrosine kinase, did not inhibit the ingestion of E-IgG but depressed by 30-40% the respiratory burst both in normal and Ca(2+)-depleted neutrophils. These results demonstrate the following findings in human neutrophils. (1) Contrary to the phagocytosis mediated by more than one receptor (yeast-IgG, yeast-Con A, yeast-C3b/bi), the transmembrane signaling involving increase in [Ca2+]i and hydrolysis of phospholipids plays a role in the phagocytosis and respiratory burst mediated by Fc gamma Rs alone. Thus, different signal transduction pathways can be involved in phagocytosis and associated respiratory burst depending on the receptor or combination of receptors activated. (2) Fc gamma Rs alone promote phagocytosis with two signaling pathways independent of and dependent on [Ca2+]i changes and phospholipid hydrolysis and insensitive to PT, staurosporine, and genistein. (3) The signaling pathways promoting phagocytosis triggered by Fc gamma Rs alone are in some way, or at some step, different from those that activate the respiratory burst.
我们之前已经表明,在中性粒细胞中,由细胞内钙离子浓度升高([Ca2+]i)和磷脂水解组成的经典跨膜信号传导对于由多种受体(酵母-IgG、酵母-C3b/bi、酵母-Con A)介导的吞噬作用并非必不可少。这项工作研究了这种跨膜信号传导在红细胞(E)-IgG吞噬作用中的作用,E-IgG的吞噬作用仅由IgG受体(FcγRs)介导。E-IgG的摄取与[Ca2+]i的增加以及通过磷脂酶C、D和A2的激活产生肌醇磷酸、磷脂酸、二酰基甘油和花生四烯酸有关。与摄取的相同数量的颗粒相关,E-IgG吞噬过程中的呼吸爆发和跨膜信号传导比酵母-IgG吞噬过程中的要小得多。在缺乏钙离子(Ca(2+))的中性粒细胞中,由于缺乏[Ca2+]i的增加和磷脂的水解,E-IgG的吞噬作用降低了约60%;由于摄取减少以及残余吞噬作用对NADPH氧化酶的刺激减少,呼吸爆发也受到抑制。百日咳毒素(PT)并不抑制E-IgG的吞噬作用,但使正常中性粒细胞中脂质跨膜信号传导的刺激和呼吸爆发降低了约40%。在缺乏钙离子(Ca(2+))的中性粒细胞中,该毒素对摄取和呼吸爆发没有影响。星形孢菌素在正常和缺乏钙离子(Ca(2+))的中性粒细胞中均不抑制E-IgG的摄取,但使正常中性粒细胞中的呼吸爆发降低30 - 40%,而在缺乏钙离子(Ca(2+))的中性粒细胞中则无此作用。酪氨酸激酶抑制剂染料木黄酮不抑制E-IgG的摄取,但使正常和缺乏钙离子(Ca(2+))的中性粒细胞中的呼吸爆发均降低30 - 40%。这些结果在人类中性粒细胞中证明了以下发现。(1)与由多种受体(酵母-IgG、酵母-Con A、酵母-C3b/bi)介导的吞噬作用相反, 涉及[Ca2+]i增加和磷脂水解的跨膜信号传导在仅由FcγRs介导的吞噬作用和呼吸爆发中起作用。因此,根据激活的受体或受体组合的不同,不同的信号转导途径可能参与吞噬作用和相关的呼吸爆发。(2)单独的FcγRs通过两条独立于和依赖于[Ca2+]i变化及磷脂水解且对PT、星形孢菌素和染料木黄酮不敏感的信号传导途径促进吞噬作用。(3)单独由FcγRs触发的促进吞噬作用的信号传导途径在某种程度上或在某个步骤上与激活呼吸爆发的信号传导途径不同。