Wiersma E J, Collins C, Fazel S, Shulman M J
Department of Immunology, University of Toronto, Ontario, Canada.
J Immunol. 1998 Jun 15;160(12):5979-89.
Previous studies have discerned two forms of polymeric mouse IgM: moderately cytolytic (complement-activating) pentamer, which contains J chain, and highly cytolytic hexamer, which lacks J chain. To investigate the relationships among polymeric structure, J chain content, and cytolytic activity, we produced IgM in J chain-deficient and J chain-proficient mouse hybridoma cell lines. Both hexamer and pentamer were produced in the absence as well as the presence of J chain. Hexameric IgM activated (guinea pig) complement approximately 100-fold more efficiently than did J chain-deficient pentamer, which, in turn, was more active than J chain-containing pentamer. These results are consistent with the hypothesis that J chain-containing pentamer cannot activate complement. We also analyzed the structure of IgM-S337, in which the mu-chain bears the C337S substitution. Like normal IgM, IgM-S337 was formed as a hexamer and as both J chain deficient- and J chain-containing pentamers. Unlike normal IgM, IgM-S337 dissociated in SDS into various subunits. For IgM-S337 pentamer, the predominant subunits migrated as mu2kappa2 and mu4kappa4, and the subunit distribution was unaltered by J chain. However, J chain was found only in the mu2kappa2 species, suggesting that some arrangement of inter-mu bonds directs incorporation of J chain. IgM-S337 hexamer also dissociated to mu2kappa2 and mu4kappa4, but also yielded several species migrating much more slowly in SDS-PAGE than wild-type mu12kappa12. To account for these forms, we propose that each mu-chain can interact with three other mu-chains and that some hexameric molecules contain two catenated mu6kappa6 circles.
以往的研究已识别出两种形式的聚合型小鼠IgM:具有中度细胞溶解作用(补体激活)的五聚体,其含有J链;以及具有高度细胞溶解作用的六聚体,其缺乏J链。为了研究聚合结构、J链含量和细胞溶解活性之间的关系,我们在缺乏J链和具有J链的小鼠杂交瘤细胞系中产生了IgM。在J链缺失和存在的情况下均产生了六聚体和五聚体。六聚体IgM激活(豚鼠)补体的效率比缺乏J链的五聚体高约100倍,而缺乏J链的五聚体又比含J链的五聚体更具活性。这些结果与含J链的五聚体不能激活补体这一假说相符。我们还分析了IgM-S337的结构,其中μ链带有C337S替换。与正常IgM一样,IgM-S337形成为六聚体以及缺乏J链和含J链的五聚体。与正常IgM不同,IgM-S337在SDS中解离成各种亚基。对于IgM-S337五聚体,主要亚基迁移为μ2κ2和μ4κ4,且亚基分布不受J链影响。然而,仅在μ2κ2种类中发现了J链,这表明μ间键的某种排列指导了J链的掺入。IgM-S337六聚体也解离为μ2κ2和μ4κ4,但还产生了几种在SDS-PAGE中迁移比野生型μ12κ12慢得多的种类。为了解释这些形式,我们提出每个μ链可与其他三个μ链相互作用,并且一些六聚体分子包含两个连环的μ6κ6环。