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干扰素调节因子-1在细胞因子诱导的小鼠胰腺β细胞mRNA表达及细胞死亡中的作用

The role of interferon regulatory factor-1 in cytokine-induced mRNA expression and cell death in murine pancreatic beta-cells.

作者信息

Pavlovic D, Chen M C, Gysemans C A, Mathieu C, Eizirik D L

机构信息

Eizirik, Department of Metabolism and Endocrinology, Diabetes Research Center, Laarbeeklaan 103, 1090 Brussels, Belgium.

出版信息

Eur Cytokine Netw. 1999 Sep;10(3):403-12.

Abstract

Combinations of cytokines, including interleukin-1beta (IL-1beta) and interferon-gamma (IFN-gamma), induce nitric oxide (NO) production and cell death in pancreatic islet cells. We have previously shown that these events are preceded by increased expression of the transcription factor interferon regulatory factor-1 (IRF-1). We utilized an IRF-1 knockout mouse (IRF-1-/-) to investigate the role of IRF-1 in cytokine-induced islet- and beta-cell gene expression and cell death. For this purpose, pancreatic islets or FACS-purified beta-cells were isolated from wild type (wt) or IRF-1-/- mice. These cells were exposed for different time points to IL-1beta (50 U/mI), IFN-gamma (1,000 U/ml) and/or TNF-alpha (1,000 U/ml) before being harvested for determination of viability (by nuclear dyes) and mRNA expression (by RT-PCR with specific primers). Following a 24 hours exposure to IL-1beta or IL-1beta + IFN-gamma, pancreatic islets isolated from IRF-1-/- mice presented a 30-50% reduction in medium nitrite accumulation and inducible NO-synthase (iNOS) expression. Interestingly, both wt and IRF-1-/- purified beta-cells failed to produce NO in response to IL-1beta alone, but presented a similar increase in nitrite accumulation and iNOS expression following exposure to IL-1beta + IFN-gamma. The basal expression of MHC class I mRNA was lower in IRF-1-/- islet cells (30% reduction), but there was a similar 2-4 fold-increase in MHC expression in islet cells from both strains following cytokine exposure. IL-1beta induced serine protease inhibitor-3 (SPI-3; a putative cellular "defense" protein) mRNA expression in both wt and IRF-1-/- islets or beta-cells. IFN-gamma decreased the IL-1beta-induced SPI-3 expression in wt islets or beta-cells, but induced a 5-fold increase in the expression of this mRNA in IRF-1-/- islets cells, suggesting that IRF-1 mediates an inhibitory effect of IFN-gamma on SPI-3 expression. Treatment of whole islets for 3 days with IL-1beta + IFN-gamma induced significantly more islet cell death in wt than in IRF-1-/- mice (respectively 85 +/- 3% versus 31 +/- 4% dead cells). On the other hand, prolonged exposure (3-9 days) of FACS-purified beta-cells to the same cytokines, or a combination of 3 cytokines, led to a similar increase in cell death in both IRF-1-/- and wt islets. In conclusion, IRF-1 contributes to cytokine-induced islet iNOS expression and cell death. These effects are absent in purified beta-cells, suggesting that IRF-1 may mediate its effects on whole islets via activation of non-endocrine cells (e.g. macrophages and ductal cells) present in these preparations.

摘要

包括白细胞介素 -1β(IL -1β)和干扰素 -γ(IFN -γ)在内的细胞因子组合可诱导胰岛细胞产生一氧化氮(NO)并导致细胞死亡。我们之前已经表明,这些事件之前转录因子干扰素调节因子 -1(IRF -1)的表达会增加。我们利用IRF -1基因敲除小鼠(IRF -1-/-)来研究IRF -1在细胞因子诱导的胰岛和β细胞基因表达及细胞死亡中的作用。为此,从野生型(wt)或IRF -1-/-小鼠中分离出胰岛或经荧光激活细胞分选术(FACS)纯化的β细胞。在收获这些细胞以测定活力(通过核染料)和mRNA表达(通过使用特异性引物的逆转录 - 聚合酶链反应(RT -PCR))之前,将它们在不同时间点暴露于IL -1β(50 U/ml)、IFN -γ(1000 U/ml)和/或肿瘤坏死因子 -α(TNF -α,1000 U/ml)。在暴露于IL -1β或IL -1β + IFN -γ 24小时后,从IRF -1-/-小鼠分离出的胰岛中,培养基中亚硝酸盐积累和诱导型一氧化氮合酶(iNOS)表达降低了30 - 50%。有趣的是,wt和IRF -1-/-纯化的β细胞单独对IL -1β均无NO产生,但在暴露于IL -1β + IFN -γ后,亚硝酸盐积累和iNOS表达呈现相似的增加。IRF -1-/-胰岛细胞中主要组织相容性复合体I类(MHC class I)mRNA的基础表达较低(降低30%),但在细胞因子暴露后,两种品系的胰岛细胞中MHC表达均有相似的2 - 4倍增加。IL -1β在wt和IRF -1-/-胰岛或β细胞中均诱导丝氨酸蛋白酶抑制剂 -3(SPI -3;一种假定的细胞“防御”蛋白)mRNA表达。IFN -γ降低了wt胰岛或β细胞中IL -1β诱导的SPI -3表达,但在IRF -1-/-胰岛细胞中诱导该mRNA表达增加了5倍,这表明IRF -1介导了IFN -γ对SPI -3表达的抑制作用。用IL -1β + IFN -γ处理整个胰岛3天,wt小鼠中诱导的胰岛细胞死亡明显多于IRF -1-/-小鼠(分别为85±3%和31±4%的死亡细胞)。另一方面,将FACS纯化的β细胞长时间(3 - 9天)暴露于相同的细胞因子或三种细胞因子的组合,导致IRF -1-/-和wt胰岛中的细胞死亡有相似的增加。总之,IRF -1促进细胞因子诱导的胰岛iNOS表达和细胞死亡。这些作用在纯化的β细胞中不存在,这表明IRF -1可能通过激活这些制剂中存在的非内分泌细胞(如巨噬细胞和导管细胞)来介导其对整个胰岛的作用。

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