Bhattacharya A, Dorf M E, Springer T A
J Immunol. 1981 Dec;127(6):2488-95.
Two monoclonal antibodies to mouse Ia antigens were produced by fusion of xenoimmune rat spleen cells with the NSI myeloma. These monoclonal antibodies detect polymorphic determinants present on B cells and activated T lymphocytes from mice carrying the H-2b, H-2d, H-2k, H-2r, and H-2q haplotypes but not from mice carrying the H-2s or H-2r haplotypes. Antigenic site number determinations showed the positive haplotypes can be divided into 2 groups. Mice bearing the H-2b, H-2d, and H-2q haplotypes express a high number--40,000 to 80,000--of antigenic sites per B lymphocyte, and monoclonal antibody plus complement can lyse B cells from these mice. In contrast, mice bearing the H-2k and H-2r haplotypes express a low number of antigenic sites--about 5000 per cell. Spleen cells from mice carrying the latter haplotypes are not lysed with monoclonal antibody and complement. Genetic mapping demonstrated that high and low expression map to the I-A and I-E subregions, respectively. The monoclonal antibodies detect an Ia specificity on I-Ab, I-Ad, I-Ed, and I-Ek molecules. These observations were confirmed using several different experimental approaches, i.e., cytotoxicity, fluorescent staining, competitive inhibition of monoclonal antibody binding, and 2-dimensional gel electrophoresis of immunoprecipitates. The avidity for A alpha b A beta b and E alpha k E beta k is 5 to 7 x 10(-9) M-1. The antigenic determinant is heat labile, which suggests that it is not carbohydrate. The results imply that Ia antigens encoded by distinct subregions share sequence homology, which may be a consequence of ancestral gene duplication.
通过将异种免疫大鼠脾细胞与NSI骨髓瘤细胞融合,制备了两种针对小鼠Ia抗原的单克隆抗体。这些单克隆抗体可检测携带H-2b、H-2d、H-2k、H-2r和H-2q单倍型的小鼠B细胞和活化T淋巴细胞上存在的多态性决定簇,但不能检测携带H-2s或H-2r单倍型的小鼠的相关决定簇。抗原位点数量测定表明,阳性单倍型可分为两组。携带H-2b、H-2d和H-2q单倍型的小鼠每个B淋巴细胞表达大量(40000至80000个)抗原位点,单克隆抗体加补体可裂解这些小鼠的B细胞。相比之下,携带H-2k和H-2r单倍型的小鼠表达少量抗原位点(每个细胞约5000个)。携带后一种单倍型的小鼠的脾细胞不会被单克隆抗体和补体裂解。基因定位表明,高表达和低表达分别定位于I-A和I-E亚区。单克隆抗体可检测I-Ab、I-Ad、I-Ed和I-Ek分子上的Ia特异性。使用几种不同的实验方法,即细胞毒性、荧光染色、单克隆抗体结合的竞争性抑制以及免疫沉淀物的二维凝胶电泳,证实了这些观察结果。对AαbAβb和EαkEβk的亲和力为5至7×10⁻⁹ M⁻¹。抗原决定簇对热不稳定,这表明它不是碳水化合物。结果表明,由不同亚区编码的Ia抗原具有序列同源性,这可能是祖先基因复制的结果。