El-Gayar Stefan, Thüring-Nahler Heike, Pfeilschifter Josef, Röllinghoff Martin, Bogdan Christian
Institute of Clinical Microbiology, Immunology and Hygiene, University of Erlangen-Nuremberg, Erlangen, Germany.
J Immunol. 2003 Nov 1;171(9):4561-8. doi: 10.4049/jimmunol.171.9.4561.
Inducible NO synthase (iNOS) and its generation of NO from L-arginine are subject to transcriptional as well as posttranscriptional control by cytokines. In this study, we describe a novel, translational mechanism of iNOS regulation by arginine availability. Using mouse inflammatory peritoneal macrophages stimulated with IFN-gamma plus LPS, we demonstrate that the suppression of iNOS protein, which is observed after a 16-h (but not after a 6-h) pretreatment with IL-13, despite an unaltered iNOS mRNA level, results from arginine depletion by arginase. The addition of arginase inhibitors (in the pretreatment phase) or of arginine (in the stimulation phase) completely blocked the down-regulation of iNOS protein by IL-13. The rescuing effect of arginine supplementation was not due to a positive feedback regulation of iNOS expression via enhanced production of NO. A striking suppression of iNOS protein (but not of iNOS mRNA) was also seen, when IL-13 was replaced by purified arginase or when macrophages were stimulated with IFN-gamma/LPS in arginine-free medium. Arginine deficiency specifically impaired the de novo synthesis and the stability of iNOS protein, but did not affect the production of TNF and the overall protein synthesis of the macrophages. From these results, we conclude that arginine not only functions as a substrate for iNOS, but is also critical for maintaining normal levels of iNOS protein in cytokine-stimulated macrophages.
诱导型一氧化氮合酶(iNOS)及其从L-精氨酸生成一氧化氮(NO)的过程受到细胞因子的转录及转录后调控。在本研究中,我们描述了一种由精氨酸可用性调控iNOS的新型翻译机制。使用经γ干扰素(IFN-γ)加脂多糖(LPS)刺激的小鼠炎性腹腔巨噬细胞,我们证明,尽管iNOS信使核糖核酸(mRNA)水平未改变,但在用白细胞介素-13(IL-13)进行16小时(而非6小时)预处理后观察到的iNOS蛋白抑制,是由精氨酸酶导致的精氨酸耗竭所致。添加精氨酸酶抑制剂(在预处理阶段)或精氨酸(在刺激阶段)可完全阻断IL-13对iNOS蛋白的下调作用。补充精氨酸的挽救作用并非由于通过增强NO生成对iNOS表达的正反馈调节。当用纯化的精氨酸酶替代IL-13或在无精氨酸培养基中用IFN-γ/LPS刺激巨噬细胞时,也观察到iNOS蛋白(而非iNOS mRNA)受到显著抑制。精氨酸缺乏特异性损害iNOS蛋白的从头合成及稳定性,但不影响巨噬细胞中肿瘤坏死因子(TNF)的产生及整体蛋白质合成。从这些结果我们得出结论,精氨酸不仅作为iNOS的底物发挥作用,而且对于维持细胞因子刺激的巨噬细胞中iNOS蛋白的正常水平也至关重要。