Davis A C, Roux K H, Shulman M J
Department of Immunology, University of Toronto, Canada.
Eur J Immunol. 1988 Jul;18(7):1001-8. doi: 10.1002/eji.1830180705.
The cysteine at position 575 of the immunoglobulin mu heavy chain is thought to provide the only disulfide bonds joining the monomer subunits of mouse polymeric IgM. The importance of this cysteine in the assembly of polymeric IgM was investigated by using site-directed mutagenesis to produce mu chains with serine at position 575. Thirty percent of the secreted mutant IgM was covalently assembled polymer implying that cysteines other than Cys575 can form inter-subunit disulfide bonds. The polymeric IgM lacked J chain, mediated complement-dependent cytolysis and appeared to have a higher molecular weight than conventional IgM pentamers, as judged by sucrose gradient sedimentation and sodium dodecyl sulfate-polyacrylamide gel electrophoresis mobility. Electron microscopy revealed that the mutant IgM molecule contained six subunits. Wild-type IgM, while synthesized predominantly as a pentameric molecule, was assembled in at least two other forms, which were distinguished by their electrophoretic mobility. The apparently higher molecular weight forms of wild-type IgM include hexameric molecules which, like the hexameric mutant IgM, contained much less J chain that the pentameric form and were 20-fold more efficient at activating complement-dependent cytolysis.
免疫球蛋白μ重链第575位的半胱氨酸被认为是连接小鼠聚合IgM单体亚基的唯一二硫键。通过定点诱变产生第575位为丝氨酸的μ链,研究了该半胱氨酸在聚合IgM组装中的重要性。30%的分泌型突变IgM以共价方式组装成聚合物,这意味着除Cys575外的半胱氨酸也能形成亚基间二硫键。通过蔗糖梯度沉降和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳迁移率判断,该聚合IgM缺乏J链,介导补体依赖的细胞溶解作用,且分子量似乎比传统的IgM五聚体更高。电子显微镜显示,突变型IgM分子包含六个亚基。野生型IgM虽然主要以五聚体分子形式合成,但至少以另外两种形式组装,这两种形式可通过其电泳迁移率区分。野生型IgM明显分子量更高的形式包括六聚体分子,与六聚体突变型IgM一样,其J链比五聚体形式少得多,在激活补体依赖的细胞溶解方面效率高出20倍。