Lafuse W P, Savarirayan S, McCormick J F, David C S
Transplantation. 1987 Feb;43(2):297-301. doi: 10.1097/00007890-198702000-00026.
Nine recombinant H-2 mouse strains with crossovers in the I region between I-E-negative haplotypes f,q and I-E-positive haplotypes p,k were examined for I-E expression by microcytotoxicity dye exclusion assay. These recombinants were found to be negative for I-E expression. There are two possible genotypes in these recombinant mouse strains that could result in lack of I-E expression. Recombinants with crossovers between the E alpha gene and the S region would have both nonexpressed I-E alpha and beta genes (E beta fE alpha f, E beta qE alpha q) and recombinants with crossovers between the E beta and E alpha genes would have a nonexpressed E beta gene (E beta f or E alpha q) and a functional E alpha gene (E alpha k or E alpha p). To distinguish between these possible genotypes these recombinants were crossed to B10.A(4R), which carries a functional E alpha k gene but is I-E-negative due to a nonexpressed E alpha b gene. F1 mice were examined for transcomplementing I-E molecules by immunoprecipitation of 3H-leucine-radiolabeled detergent lysates of spleen cells with a monoclonal I-E antibody (14-4-4). Detection of a transcomplementing I-E molecule was confirmed by immunoprecipitation with a monoclonal antibody (H9-14.8) specific for the I-Ek beta polypeptide chain derived from B10.A(4R) and by tryptic peptide map comparisons. Five recombinant mouse strains were able to complement with B10.A(4R) in F1 mice to generate a transcomplementing I-E molecule, and thus have an expressed I-E alpha gene (E alpha k or E alpha p). Four recombinants did not complement with B10.A(4R) in the F1 expression of I-E molecules, and thus have nonexpressed I-E alpha genes (E alpha f or E alpha q).
通过微细胞毒性染料排除试验,对9个重组H-2小鼠品系进行了检测,这些品系在I-E阴性单倍型f、q和I-E阳性单倍型p、k之间的I区域存在交叉。发现这些重组体的I-E表达呈阴性。这些重组小鼠品系中有两种可能的基因型会导致I-E表达缺失。Eα基因与S区域之间存在交叉的重组体将同时具有未表达的I-Eα和β基因(EβfEαf、EβqEαq),而Eβ和Eα基因之间存在交叉的重组体将具有一个未表达的Eβ基因(Eβf或Eαq)和一个功能性Eα基因(Eαk或Eαp)。为了区分这些可能的基因型,将这些重组体与B10.A(4R)杂交,B10.A(4R)携带功能性Eαk基因,但由于未表达的Eαb基因而I-E呈阴性。通过用单克隆I-E抗体(14-4-4)对脾细胞的3H-亮氨酸放射性标记去污剂裂解物进行免疫沉淀,检测F1小鼠中的转互补I-E分子。通过用对源自B10.A(4R)的I-Ekβ多肽链具有特异性的单克隆抗体(H9-14.8)进行免疫沉淀以及胰蛋白酶肽图谱比较,证实了转互补I-E分子的检测。五个重组小鼠品系能够在F1小鼠中与B10.A(4R)互补,以产生转互补I-E分子,因此具有表达的I-Eα基因(Eαk或Eαp)。四个重组体在I-E分子的F1表达中不与B10.A(4R)互补,因此具有未表达的I-Eα基因(Eαf或Eαq)。