Takeda S, Zou Y R, Bluethmann H, Kitamura D, Muller U, Rajewsky K
Basel Institute for Immunology, Switzerland.
EMBO J. 1993 Jun;12(6):2329-36. doi: 10.1002/j.1460-2075.1993.tb05887.x.
Immunoglobulins (Ig) secreted from a plasma cell contain either kappa or lambda light chains, but not both. This phenomenon is termed isotypic kappa-lambda exclusion. While kappa-producing cells have their lambda chain genes in germline configuration, in most lambda-producing cells the kappa chain genes are either non-productively rearranged or deleted. To investigate the molecular mechanism for isotypic kappa-lambda exclusion, in particular the role of the Ig kappa intron enhancer, we replaced this enhancer by a neomycin resistance (neoR) gene in embryonic stem (ES) cells. B cells heterozygous for the mutation undergo V kappa-J kappa recombination exclusively in the intact Ig kappa locus but not in the mutated Ig kappa locus. Homozygous mutant mice exhibited no rearrangements in their Ig kappa loci. However, splenic B cell numbers were only slightly reduced as compared with the wild-type, and all B cells expressed lambda chain bearing surface Ig. These findings demonstrate that rearrangement in the Ig kappa locus is not essential for lambda gene rearrangement. We also generated homozygous mutant mice in which the neoR gene was inserted at the 3' end of the Ig kappa intron enhancer. Unexpectedly, mere insertion of the neoR gene showed some suppressive effect on V kappa-J kappa recombination. However, the much more pronounced inhibition of V kappa-J kappa recombination by the replacement of the Ig kappa intron enhancer suggests that this enhancer is essential for V kappa-J kappa recombination.
浆细胞分泌的免疫球蛋白(Ig)只含有κ链或λ链中的一种,不会同时含有两者。这种现象被称为同型κ-λ排斥。产生κ链的细胞其λ链基因处于种系构型,而在大多数产生λ链的细胞中,κ链基因要么发生无效重排,要么被删除。为了研究同型κ-λ排斥的分子机制,特别是Igκ内含子增强子的作用,我们在胚胎干细胞(ES细胞)中用新霉素抗性(neoR)基因取代了该增强子。对该突变杂合的B细胞仅在完整的Igκ基因座中进行Vκ-Jκ重排,而不在突变的Igκ基因座中进行。纯合突变小鼠的Igκ基因座没有重排。然而,与野生型相比,脾脏B细胞数量仅略有减少,并且所有B细胞均表达带有表面Ig的λ链。这些发现表明,Igκ基因座中的重排对于λ基因重排并非必不可少。我们还构建了纯合突变小鼠,其中neoR基因插入到Igκ内含子增强子的3'端。出乎意料的是,仅仅插入neoR基因就对Vκ-Jκ重排表现出一定的抑制作用。然而,通过取代Igκ内含子增强子对Vκ-Jκ重排产生的更显著抑制表明,该增强子对于Vκ-Jκ重排至关重要。