Klein J B, Scherzer J A, McLeish K R
Department of Medicine, University of Louisville Health Sciences Center, KY 40292.
J Immunol. 1992 Apr 15;148(8):2483-8.
Exposure to IFN-gamma increases the respiratory burst of polymorphonuclear leukocytes stimulated by the chemoattractant FMLP. However, the mechanism by which IFN-gamma alters the response to FMLP is unclear. We addressed the hypothesis that IFN-gamma enhances the response to FMLP by regulating the expression of elements of the formyl peptide receptor transmembrane-signaling pathway. HL-60 granulocytes were used as a model of FMLP transmembrane signaling. Formyl peptide receptor number and affinity were studied in isolated plasma membranes prepared from control HL-60 cells (CM) and cells exposed to IFN-gamma 100 U/ml for 24 h (IFN-M). Formyl peptide receptors were significantly increased on IFN-M compared with CM (1473 +/- 300 vs 3209 +/- 924). FMLP stimulates increased guanine nucleotide-binding protein (G protein) activation in IFN-M as evidenced by enhanced guanosine 5'-[gamma-thio]triphosphate binding and GTPase activity. Gi sub-unit content was increased in IFN-M as measured by pertussis toxin-catalyzed ADP-ribosylation and immunoblotting with antibodies against alpha i2 and alpha i3 G protein subunits. Guanosine 5'-[gamma-thio]triphosphate equilibrium binding demonstrated an increased number of G proteins coupled to formyl peptide receptors on IFN-M. We conclude that IFN-gamma increases expression of both formyl peptide receptors and G proteins coupled to these receptors, thereby enhancing FMLP-stimulated transmembrane signaling. Regulation of transmembrane signaling element expression may be a significant mechanism by which IFN-gamma regulates cellular functions.
暴露于γ-干扰素可增强趋化因子FMLP刺激的多形核白细胞的呼吸爆发。然而,γ-干扰素改变对FMLP反应的机制尚不清楚。我们探讨了γ-干扰素通过调节甲酰肽受体跨膜信号通路元件的表达来增强对FMLP反应的假说。HL-60粒细胞用作FMLP跨膜信号传导的模型。在从对照HL-60细胞(CM)和暴露于100 U/mlγ-干扰素24小时的细胞(IFN-M)制备的分离质膜中研究甲酰肽受体的数量和亲和力。与CM相比,IFN-M上的甲酰肽受体显著增加(1473±300对3209±924)。FMLP刺激IFN-M中鸟嘌呤核苷酸结合蛋白(G蛋白)活化增加,这通过增强的鸟苷5'-[γ-硫代]三磷酸结合和GTP酶活性得到证明。通过百日咳毒素催化的ADP-核糖基化以及用针对αi2和αi3 G蛋白亚基的抗体进行免疫印迹测定,IFN-M中的Gi亚基含量增加。鸟苷5'-[γ-硫代]三磷酸平衡结合表明IFN-M上与甲酰肽受体偶联的G蛋白数量增加。我们得出结论,γ-干扰素增加甲酰肽受体和与这些受体偶联的G蛋白的表达,从而增强FMLP刺激的跨膜信号传导。跨膜信号元件表达的调节可能是γ-干扰素调节细胞功能的重要机制。