Lorsbach R B, Murphy W J, Lowenstein C J, Snyder S H, Russell S W
Wilkinson Laboratory, Cancer Center, University of Kansas Medical Center, Kansas City 66160-7184.
J Biol Chem. 1993 Jan 25;268(3):1908-13.
Macrophages can become activated to kill both tumor cells and a variety of microbes. Results here show that synthesis of nitric oxide (NO), a mediator of many macrophage cytotoxic functions, was greatly increased when cells of the mouse macrophage cell line RAW 264.7 were costimulated with bacterial lipopolysaccharide (LPS) and interferon-gamma (IFN-gamma), compared to LPS alone. This increase paralleled increases in cytotoxicity. Northern analysis showed that increased production of NO was preceded by markedly enhanced expression of mRNA for the inducible form of macrophage NO synthase (mac-NOS), which catalyzes the synthesis of NO. Cycloheximide inhibited the induction of mac-NOS mRNA by IFN-gamma and LPS, indicating that expression of this mRNA required de novo protein synthesis. Elevated expression of mac-NOS mRNA was not due to an increase in its stability. Rather, the combination of IFN-gamma and LPS induced a much higher rate of transcription of the mac-NOS gene than did stimulation with LPS alone. These results provide one explanation of why priming and triggering stimuli, such as IFN-gamma and LPS, respectively, synergistically activate macrophages and may be applicable to explaining how IFN-gamma augments NO-dependent microbicidal activity in macrophages as well.
巨噬细胞可被激活以杀死肿瘤细胞和多种微生物。此处结果表明,与单独使用细菌脂多糖(LPS)相比,当小鼠巨噬细胞系RAW 264.7细胞与细菌脂多糖(LPS)和干扰素-γ(IFN-γ)共同刺激时,作为许多巨噬细胞细胞毒性功能介质的一氧化氮(NO)的合成大幅增加。这种增加与细胞毒性的增加平行。Northern分析表明,NO产量的增加之前是诱导型巨噬细胞NO合酶(mac-NOS)的mRNA表达显著增强,该酶催化NO的合成。放线菌酮抑制IFN-γ和LPS对mac-NOS mRNA的诱导,表明该mRNA的表达需要从头合成蛋白质。mac-NOS mRNA的表达升高并非因其稳定性增加。相反,IFN-γ和LPS的组合比单独用LPS刺激诱导的mac-NOS基因转录速率高得多。这些结果解释了为何引发刺激和触发刺激(如分别为IFN-γ和LPS)能协同激活巨噬细胞,也可能适用于解释IFN-γ如何增强巨噬细胞中依赖NO的杀菌活性。