Baxter A G, Cooke A
Department of Pathology, Cambridge University, United Kingdom.
Diabetes. 1993 Nov;42(11):1574-8. doi: 10.2337/diab.42.11.1574.
The NOD mouse is widely used as a model of organ-specific autoimmunity because it develops specific autoimmune destruction of pancreatic beta-cells. Although it is clear that T-cells and monocytes are necessary for beta-cell destruction, humoral factors, such as antibodies and complement, may also contribute to tissue damage. Attempts to cure diabetes in experimental models by immunoisolation of transplanted islets has raised the need to protect the islets from the relatively small components of the complement cascade. In this study, we report that NOD mice have no complement lytic activity and that the exclusion of complement is unnecessary in this model. Sera from young NOD mice were unable to lyse sheep red blood cells coated with rabbit antibody. Lytic activity of NOD sera was reconstituted by mixing with C4-deficient CBA sera, but not C5-deficient DBA/2 sera, indicating the presence of C4, but the absence of C5 activity in NOD sera. Lytic activity of NOD sera could be reconstituted with human C5 electrofocused in polyacrylamide gel. The polymerase chain reaction was used to amplify fragments from genomic DNA corresponding to the region of Hc (the gene encoding C5) in DBA/2 mice, which carries a 2-base pair deletion responsible for the lack of C5 protein expression in these mice. DBA/2 and NOD mice from several colonies produced a fragment 2 bases shorter than that generated from the wild-type allele in BALB/c mice.(ABSTRACT TRUNCATED AT 250 WORDS)
非肥胖型糖尿病(NOD)小鼠被广泛用作器官特异性自身免疫的模型,因为它会发生胰腺β细胞的特异性自身免疫性破坏。尽管很明显T细胞和单核细胞是β细胞破坏所必需的,但体液因子,如抗体和补体,也可能导致组织损伤。通过移植胰岛的免疫隔离来治愈实验模型中的糖尿病的尝试,引发了保护胰岛免受补体级联反应中相对较小成分影响的需求。在本研究中,我们报告NOD小鼠没有补体溶解活性,并且在该模型中排除补体是不必要的。年轻NOD小鼠的血清无法裂解包被有兔抗体的绵羊红细胞。通过与C4缺陷的CBA血清混合可重建NOD血清的溶解活性,但与C5缺陷的DBA/2血清混合则不能,这表明NOD血清中存在C4,但不存在C5活性。NOD血清的溶解活性可用在聚丙烯酰胺凝胶中电聚焦的人C5重建。聚合酶链反应用于从基因组DNA中扩增对应于DBA/2小鼠中Hc(编码C5的基因)区域的片段,DBA/2小鼠携带一个2碱基对的缺失,导致这些小鼠缺乏C5蛋白表达。来自几个品系的DBA/2和NOD小鼠产生的片段比BALB/c小鼠野生型等位基因产生的片段短2个碱基。(摘要截短至250字)