Söderberg Malin, Raffalli-Mathieu Françoise, Lang Matti A
Department of Pharmaceutical Biosciences, Division of Biochemistry, Uppsala University, Box 578, SE-751 23 Uppsala, Sweden.
Mol Immunol. 2007 Jan;44(4):434-42. doi: 10.1016/j.molimm.2006.02.019. Epub 2006 Apr 11.
The aim of this study was to investigate the role of heterogeneous nuclear ribonucleoprotein I (hnRNPI) and hnRNPL in the regulation of the murine inducible nitric oxide synthase (iNOS) gene during inflammation. Treatment of mice with lipopolysaccharide (LPS)/D-galactosamine, or of RAW 264.7 cells with LPS/interferon-gamma (IFN-gamma), strongly increased iNOS expression while reducing hnRNPI levels and complex formation between hnRNPI/hnRNPL and the 3'-untranslated region (3'-UTR) of iNOS mRNA. Introduction of the iNOS 3'-UTR to a luciferase reporter gene reduced its expression in RAW 264.7 cells. However, when hnRNPI and hnRNPL binding sites were deleted, luciferase expression was recovered. LPS/IFN-gamma increased the luciferase activity of the full-length 3'-UTR construct compared to control, while its effects on the deletion constructs were modest. The results indicate that LPS/IFN-gamma induce iNOS through a mechanism involving hnRNPI and hnRNPL binding to iNOS 3'-UTR. Our data suggest that iNOS mRNA degradation is promoted upon binding of hnRNPI and hnRNPL to a destabilizing region within its 3'-UTR, while inflammatory stimuli causing dissociation of the mRNA-protein complex, yield a more stable transcript. This appears to be particularly significant during extended inflammatory stimuli, resulting in sustained nitric oxide production. The critical event launching this process appears to be the degradation of hnRNPI.
本研究的目的是调查异质性核核糖核蛋白I(hnRNPI)和hnRNPL在炎症过程中对小鼠诱导型一氧化氮合酶(iNOS)基因调控中的作用。用脂多糖(LPS)/D-半乳糖胺处理小鼠,或用LPS/干扰素-γ(IFN-γ)处理RAW 264.7细胞,可强烈增加iNOS表达,同时降低hnRNPI水平以及hnRNPI/hnRNPL与iNOS mRNA的3'-非翻译区(3'-UTR)之间的复合物形成。将iNOS 3'-UTR导入荧光素酶报告基因可降低其在RAW 264.7细胞中的表达。然而,当hnRNPI和hnRNPL结合位点被缺失时,荧光素酶表达得以恢复。与对照相比,LPS/IFN-γ增加了全长3'-UTR构建体的荧光素酶活性,而其对缺失构建体的影响较小。结果表明,LPS/IFN-γ通过涉及hnRNPI和hnRNPL与iNOS 3'-UTR结合的机制诱导iNOS。我们的数据表明,hnRNPI和hnRNPL与iNOS 3'-UTR内的不稳定区域结合后可促进iNOS mRNA降解,而导致mRNA-蛋白质复合物解离的炎性刺激产生更稳定的转录本。这在延长的炎性刺激期间似乎尤为重要,从而导致一氧化氮的持续产生。启动这一过程的关键事件似乎是hnRNPI的降解。