Perosa F, Luccarelli G, Prete M, Indiveri F, Dammacco F
Department of Internal Medicine, University of Foggia Medical School, Italy.
Clin Exp Med. 2001 Jun;1(2):81-9. doi: 10.1007/s10238-001-8016-1.
The mouse mAb2 16D7 recognizes the paratope of the syngeneic anti-human CD4 mAb HP2/6 (mAb1 of our idiotypic cascade) and mimics CD4 in xenogeneic settings in humans. Immunochemical and sequence analyses were performed to define the minimum structural requirement for this mimicry. Binding assay of mAb1 with isolated naive 16D7 H and L chains showed that only the second reacted with mAb1. Specificity was indicated by the lack of reactivity of mAb1 with the L chain of mAb2 14D6, which also recognizes mAb1-paratope. It is likely that the 16D7-L mAb1-specific epitope is "sequence-dependent", since fully denatured 16D7-L still reacted with mAb1. Sequence analysis of 16D7 and mAb1 showed a high degree of homology of their VH. as both were coded by the same gene family (V/II), whereas CDR3 showed the greatest diversity. Alignment of 16D7-H CDR3 with CD4, however, produced no similarity. In contrast, analyses of the 16D7 VL sequence (XX/V) defined a CDR3 6-mer peptide with a 50% identity (83% of similarity) to the CD4 stretch 218-223. This peptide seems a suitable replacement for 16D7 in active immunotherapy as it did not match any protein fragment retrieved from the n-r database (NCBI) and both the peptide and the corresponding CD4 amino acid stretch are surface accessible. Based on their immunochemical profiles and similarity to CD4, four additional 16D7-derived peptides were designed for synthesis. The data indicate that CD4 mimicry by mAb2 can be obtained at the level of primary structure and provide useful information for the synthesis of peptide(s) with bioactive potential.
小鼠单克隆抗体2 16D7识别同基因抗人CD4单克隆抗体HP2/6(我们独特型级联中的单克隆抗体1)的互补位,并在人类异种环境中模拟CD4。进行了免疫化学和序列分析以确定这种模拟的最小结构要求。单克隆抗体1与分离的天然16D7重链和轻链的结合试验表明,只有轻链与单克隆抗体1反应。单克隆抗体1与单克隆抗体2 14D6的轻链缺乏反应性,表明了特异性,单克隆抗体2 14D6也识别单克隆抗体1的互补位。16D7轻链单克隆抗体1特异性表位可能是“序列依赖性的”,因为完全变性的16D7轻链仍与单克隆抗体1反应。16D7和单克隆抗体1的序列分析显示它们的重链可变区具有高度同源性,因为两者都由相同的基因家族(V/II)编码,而互补决定区3显示出最大的多样性。然而,16D7重链互补决定区3与CD4的比对未产生相似性。相比之下,对16D7轻链可变区序列(XX/V)的分析确定了一个6聚体肽,与CD4的218-223片段具有50%的同一性(83%的相似性)。该肽似乎是主动免疫治疗中16D7的合适替代物,因为它与从非冗余数据库(NCBI)检索到的任何蛋白质片段都不匹配,并且该肽和相应的CD4氨基酸片段都可位于表面。基于它们的免疫化学特征和与CD4的相似性,设计了另外四种源自16D7的肽用于合成。数据表明,单克隆抗体2对CD4的模拟可以在一级结构水平上实现,并为具有生物活性潜力的肽的合成提供有用信息。