Darville M I, Eizirik D L
Gene Expression Unit, Diabetes Research Center, Vrije Universiteit Brussel, Brussels, Belgium.
Diabetes. 2001 Aug;50(8):1741-8. doi: 10.2337/diabetes.50.8.1741.
Fas-mediated cell death may play a role in the autoimmune destruction of pancreatic beta-cells in type 1 diabetes. beta-Cells do not express Fas under physiological conditions, but Fas mRNA and protein are induced in cytokine-exposed mouse and human islets, rendering the beta-cells susceptible to Fas ligand-induced apoptosis. The aim of the present study was to investigate the molecular regulation of Fas by cytokines in rat beta-cells and in insulin-producing RINm5F cells. Fas mRNA expression was increased 15-fold in fluorescence-activated cell sorting-purified rat beta-cells exposed to interleukin (IL)-1beta, whereas gamma-interferon had no effect. Transfection experiments of rat Fas promoter-luciferase reporter constructs into purified rat beta-cells and RINm5F insulinoma cells identified an IL-1beta-responsive region between nucleotides -223 and -54. Inactivation of two adjacent NF-kappaB and C/EBP sites in this region abolished IL-1beta-induced Fas promoter activity in RINm5F cells. Binding of NF-kappaB and C/EBP factors to their respective sites was confirmed by gel shift assays. In cotransfection experiments, NF-kappaB p65 transactivated the Fas promoter. NF-kappaB p50 and C/EBPbeta overexpression had no effect by themselves on the Fas promoter activity, but when cotransfected with p65, each factor inhibited transactivation by p65. These results suggest a critical role for NF-kappaB and C/EBP factors in cytokine-regulation of Fas expression in insulin-producing cells.
Fas介导的细胞死亡可能在1型糖尿病胰腺β细胞的自身免疫性破坏中起作用。在生理条件下,β细胞不表达Fas,但在细胞因子作用下的小鼠和人类胰岛中可诱导Fas mRNA和蛋白表达,使β细胞易受Fas配体诱导的凋亡影响。本研究的目的是探讨细胞因子对大鼠β细胞和胰岛素分泌型RINm5F细胞中Fas的分子调控。在暴露于白细胞介素(IL)-1β的荧光激活细胞分选纯化的大鼠β细胞中,Fas mRNA表达增加了15倍,而γ干扰素无此作用。将大鼠Fas启动子-荧光素酶报告基因构建体转染到纯化的大鼠β细胞和RINm5F胰岛素瘤细胞中,确定了核苷酸-223至-54之间的IL-1β反应区域。该区域中两个相邻的NF-κB和C/EBP位点失活消除了RINm5F细胞中IL-1β诱导的Fas启动子活性。凝胶迁移试验证实了NF-κB和C/EBP因子与其各自位点的结合。在共转染实验中,NF-κB p65反式激活Fas启动子。NF-κB p50和C/EBPβ单独过表达对Fas启动子活性无影响,但与p65共转染时,每个因子均抑制p65的反式激活。这些结果表明NF-κB和C/EBP因子在细胞因子调节胰岛素分泌细胞中Fas表达方面起关键作用。