Iliev A, Spatz L, Ray S, Diamond B
Department of Microbiology and Immunology, Albert Einstein College of Medicine, Bronx, NY 10461.
J Immunol. 1994 Oct 15;153(8):3551-6.
The R4A-gamma 2b transgenic mouse harbors the gene for the gamma 2b heavy chain of an anti-dsDNA Ab. Approximately 80% of B cells expressing the transgene display allelic exclusion. Although the transgenic mice have little to no detectable serum anti-DNA activity, splenic B cells can be stimulated in vitro with LPS to secrete anti-DNA Ab. Hybridomas derived from LPS-stimulated splenic B cells were analyzed for expression of the transgene and for DNA binding. All nine transgene-encoded anti-DNA-producing lines were found to express an endogenous IgM heavy chain. Of 19 randomly selected lines producing a transgene-encoded non-DNA binding Ab, none expressed a second heavy chain. The tight correlation between lack of allelic exclusion and anti-dsDNA specificity provides strong support for the hypothesis that a major function of allelic exclusion is to prevent the maintenance of a pool of potentially activatable autoreactive cells.
R4A-γ2b转基因小鼠携带抗双链DNA抗体γ2b重链的基因。大约80%表达转基因的B细胞表现出等位基因排斥。尽管转基因小鼠几乎没有可检测到的血清抗DNA活性,但脾B细胞在体外可被脂多糖刺激分泌抗DNA抗体。对源自脂多糖刺激的脾B细胞的杂交瘤进行转基因表达和DNA结合分析。发现所有九个由转基因编码产生抗DNA的细胞系都表达内源性IgM重链。在19个随机选择的产生转基因编码的非DNA结合抗体的细胞系中,没有一个表达第二条重链。等位基因排斥的缺乏与抗双链DNA特异性之间的紧密相关性为等位基因排斥的主要功能是防止维持一群潜在可激活的自身反应性细胞这一假说提供了有力支持。