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免疫球蛋白λ转基因小鼠中的同型排斥和转基因下调

Isotype exclusion and transgene down-regulation in immunoglobulin-lambda transgenic mice.

作者信息

Neuberger M S, Caskey H M, Pettersson S, Williams G T, Surani M A

机构信息

MRC Laboratory of Molecular Biology, Cambridge, UK.

出版信息

Nature. 1989 Mar 23;338(6213):350-2. doi: 10.1038/338350a0.

Abstract

A given B lymphocyte makes an antibody containing either kappa- or lambda-light chains, but not both. This isotype exclusion is effected at the level of the rearrangement of the immunoglobulin gene segments, although by an unknown mechanism. An attractive possibility is that, following productive rearrangement of one of the light-chain loci, the newly synthesized light-chain polypeptide inhibits DNA rearrangement for the other isotype. To test such feedback regulation, we have created transgenic mice carrying a rearranged lambda 1-gene. By contrast with the B cells in normal newborn mice which are mainly kappa+lambda-, the B cells in the newborn transgenic mice express lambda- but not kappa-chains. We propose that the synthesis of any light chain, be it kappa or lambda, that allows expression of IgM on the cell surface results in a cessation of all V-J joining. Interestingly, the limited light-chain repertoire of the transgenic mice does not persist and most adult B cells express endogenous kappa-rearrangements and down-regulate the transgene.

摘要

特定的B淋巴细胞产生的抗体要么含有κ轻链,要么含有λ轻链,但不会同时含有两者。这种同种型排斥在免疫球蛋白基因片段重排的水平上发生,尽管其机制尚不清楚。一种引人注目的可能性是,在一个轻链基因座发生有效重排后,新合成的轻链多肽会抑制另一种同种型的DNA重排。为了测试这种反馈调节,我们构建了携带重排的λ1基因的转基因小鼠。与正常新生小鼠中主要为κ+λ-的B细胞不同,新生转基因小鼠中的B细胞表达λ链而非κ链。我们提出,任何能使IgM在细胞表面表达的轻链(无论是κ链还是λ链)的合成都会导致所有V-J连接的停止。有趣的是,转基因小鼠有限的轻链库并不会持续存在,大多数成年B细胞表达内源性κ重排并下调转基因。

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