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Differential expression of Fas (CD95) and Fas ligand on normal human phagocytes: implications for the regulation of apoptosis in neutrophils

机译:Fas(CD95)和Fas配体在正常人吞噬细胞上的差异表达:对中性粒细胞凋亡调控的意义

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摘要

Human neutrophils, monocytes, and eosinophils are known to undergo apoptotic cell death. The Fas/Fas ligand pathway has been implicated as an important cellular pathway mediating apoptosis in diverse cell types. We conducted studies to examine the importance of the Fas/FasL system in normal human phagocytes. Although Fas expression was detected on neutrophils, monocytes, and eosinophils, constitutive expression of FasL was restricted to neutrophils. The three types of phagocytes demonstrated differential sensitivity to Fas-induced apoptosis. Only neutrophils were highly susceptible to rapid apoptosis in vitro after stimulation with activating anti-Fas IgM (mAb CH-11). Fas-mediated neutrophil apoptosis was suppressed by incubation with G-CSF, GM-CSF, IFN-gamma, TNF-alpha, or dexamethasone, as well as the selective tyrosine kinase inhibitors, herbimycin A and genistein. Spontaneous neutrophil death in vitro was partially suppressed by Fas-Ig fusion protein or antagonistic anti-Fas IgG1 (mAb ZB4). In coculture experiments, neutrophils released a soluble factor inducing death in Fas-susceptible Jurkat cells via a mechanism sensitive to the presence of Fas-Ig or anti-Fas IgG1. Immunoblot analysis using specific anti- human FasL IgG1 (mAb No. 33) identified a 37-kD protein in lysates of freshly isolated neutrophils and a 30-kD protein in the culture supernatant of neutrophils maintained in vitro. Our results suggest that mature neutrophils may be irrevocably committed to autocrine death by virtue of their constitutive coexpression of cell-surface Fas and FasL via a mechanism that is sensitive to proinflammatory cytokines, glucocorticoids, and inhibitors of tyrosine kinase activity. Furthermore, neutrophils can serve as a source of soluble FasL, which may function in a paracrine pathway to mediate cell death.
机译:已知人类嗜中性粒细胞,单核细胞和嗜酸性粒细胞经历凋亡性细胞死亡。 Fas / Fas配体途径已被认为是介导多种细胞类型凋亡的重要细胞途径。我们进行了研究,以检查Fas / FasL系统在正常人吞噬细胞中的重要性。尽管在嗜中性粒细胞,单核细胞和嗜酸性粒细胞上检测到Fas表达,但FasL的组成型表达仅限于嗜中性粒细胞。三种类型的吞噬细胞对Fas诱导的凋亡表现出不同的敏感性。在激活抗Fas IgM(mAb CH-11)刺激后,只有中性粒细胞对体外快速凋亡高度敏感。 Fas介导的中性粒细胞凋亡可通过与G-CSF,GM-CSF,IFN-γ,TNF-α或地塞米松以及选择性酪氨酸激酶抑制剂,除草素A和染料木黄酮一起孵育来抑制。 Fas-Ig融合蛋白或拮抗性抗Fas IgG1(mAb ZB4)可部分抑制体外自发性中性粒细胞死亡。在共培养实验中,中性粒细胞通过对Fas-Ig或抗Fas IgG1敏感的机制释放了可诱导Fas敏感的Jurkat细胞死亡的可溶性因子。使用特异性抗人FasL IgG1(mAb编号33)的免疫印迹分析在新鲜分离的嗜中性粒细胞的裂解物中鉴定出37-kD蛋白,在体外维持的嗜中性粒细胞培养上清液中鉴定出30-kD蛋白。我们的研究结果表明,成熟的嗜中性粒细胞通过对促炎性细胞因子,糖皮质激素和酪氨酸激酶活性抑制剂敏感的机制在细胞表面Fas和FasL组成型共表达,可能会不可避免地导致自分泌死亡。此外,中性粒细胞可以充当可溶性FasL的来源,其可能在旁分泌途径中发挥介导细胞死亡的作用。

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