Savinov Alexei Y, Tcherepanov Andrew, Green E Allison, Flavell Richard A, Chervonsky Alexander V
The Jackson Laboratory, 600 Main Street, Bar Harbor, ME 04609, USA.
Proc Natl Acad Sci U S A. 2003 Jan 21;100(2):628-32. doi: 10.1073/pnas.0237359100. Epub 2003 Jan 13.
Fas (Tnfrsf6, Apo-1, CD95) is a death receptor involved in apoptosis induced in many cell types. Fas have been shown to be expressed by insulin-producing beta cells in mice and humans. However, the importance of Fas in the development of autoimmune diabetes remains controversial. To further evaluate the importance of Fas in pathogenesis of diabetes, we generated NOD mice (nonobese diabetic mice developing spontaneous autoimmune diabetes) with beta cell-specific expression of a dominant-negative point mutation in a death domain of Fas, known as lpr(cg) or Fas(cg). Spontaneous diabetes was significantly delayed in NOD mice expressing Fas(cg), and the effect depended on the expression level of the transgene. However, Fas(cg)-bearing mice were still sensitive to diabetes transferred by splenocytes from overtly diabetic NOD mice. At the same time, Fas(cg) expression did neutralize the accelerating effect of transgenic Fas-ligand expressed by the same beta cells. Thus, both Fas-dependent and -independent mechanisms are involved in beta cell destruction, but interference with the Fas pathway early in disease development may retard or prevent diabetes progression.
Fas(肿瘤坏死因子受体超家族成员6、载脂蛋白1、CD95)是一种死亡受体,参与多种细胞类型诱导的细胞凋亡。Fas已被证明在小鼠和人类的胰岛素分泌β细胞中表达。然而,Fas在自身免疫性糖尿病发生发展中的重要性仍存在争议。为了进一步评估Fas在糖尿病发病机制中的重要性,我们构建了在Fas死亡结构域具有显性负性点突变(称为lpr(cg)或Fas(cg))的β细胞特异性表达的非肥胖糖尿病(NOD)小鼠(自发发生自身免疫性糖尿病的非肥胖糖尿病小鼠)。表达Fas(cg)的NOD小鼠自发性糖尿病明显延迟,且该效应取决于转基因的表达水平。然而,携带Fas(cg)的小鼠对来自显性糖尿病NOD小鼠脾细胞转移的糖尿病仍敏感。同时,Fas(cg)的表达确实抵消了同一β细胞表达的转基因Fas配体的加速作用。因此,Fas依赖性和非依赖性机制均参与β细胞破坏,但在疾病发展早期干扰Fas途径可能会延缓或预防糖尿病进展。