Beckman I G, Bradley J, Brooks D, Zola H
Mol Immunol. 1984 Mar;21(3):205-14. doi: 10.1016/0161-5890(84)90075-0.
Three monoclonal antibodies (mAbs), FMC4, FMC14 and FMC15, which react with invariant sites of major histocompatibility complex (MHC) class II (Ia-like) molecules were studied in various serological assays. Sequential immunodepletion experiments show that all three epitopes are present on the same class II molecules. However, a minor subset may exist which does not express epitope 15. In competitive binding assays, using several different B-lymphoblastoid cell lines (B-LCLs), e.g. BRISTOL-8 8392, B-85, RAJI, 8866, CESS-B and LD-B, FMC4 did not block the binding of FMC14, or FMC15, and vice versa. In contrast, mutual inhibition was observed between FMC14 and FMC15. Furthermore, pairwise combinations of saturating amounts of FMC4 + FMC14 and FMC4 + FMC15 gave additive binding whilst FMC14 + FMC15 did not. These results demonstrate that epitopes 4 and 14/15 are spatially distinct; 14 and 15 on the other hand appear to be spatially related. However, contrary to this partial and reciprocal inhibition was consistently observed between FMC4 and FMC14 on two other LCLs, namely DAUDI and BALM-2. Furthermore, on certain cells, FMC14 and FMC15 show markedly disparate binding. Taken together, these observations indicate that the juxtaposition of certain epitopes on class II antigens can vary according to the cell type. This demonstrates a hitherto unreported heterogeneity of antigenic determinants and of their topographical distribution on the class II molecule.
研究了三种与主要组织相容性复合体(MHC)II类(Ia样)分子的恒定位点发生反应的单克隆抗体(mAb)FMC4、FMC14和FMC15,进行了各种血清学检测。连续免疫去除实验表明,所有这三个表位都存在于同一II类分子上。然而,可能存在一个不表达表位15的较小亚群。在竞争结合试验中,使用了几种不同的B淋巴母细胞系(B-LCL),如BRISTOL-8 8392、B-85、RAJI、8866、CESS-B和LD-B,FMC4不阻断FMC14或FMC15的结合,反之亦然。相比之下,观察到FMC14和FMC15之间存在相互抑制。此外,饱和量的FMC4 + FMC14和FMC4 + FMC15的两两组合产生加成结合,而FMC14 + FMC15则不然。这些结果表明,表位4和14/15在空间上是不同的;另一方面,14和15在空间上似乎是相关的。然而,与此相反,在另外两个LCL即DAUDI和BALM-2上,始终观察到FMC4和FMC14之间存在部分和相互抑制。此外,在某些细胞上,FMC14和FMC15显示出明显不同的结合。综上所述,这些观察结果表明,II类抗原上某些表位的并列可因细胞类型而异。这证明了II类分子上抗原决定簇及其拓扑分布存在迄今未报道的异质性。