Corti A, Fassina G, Marcucci F, Cassani G
Molecular Immunology and Biochemistry Unit, Tecnogen SCpA, Milan, Italy.
Mol Immunol. 1992 Apr;29(4):471-9. doi: 10.1016/0161-5890(92)90004-h.
The immunogenic regions of human Tumor Necrosis Factor alpha (huTNF) have been mapped by studying the interaction between various mouse anti-huTNF sera and synthetic huTNF fragments, spanning the entire sequence of huTNF. Three main immunogenic regions were identified within residues 1-23, 95-116 and 137-157 of huTNF and two other less immunogenic regions within residues 117-136 and 37-55. The same huTNF regions were found to contain antigenic sites by binding studies with cognate anti-peptide sera. Competitive binding experiments with shorter synthetic subfragments provided evidence for the location of strong antigenic sites within residues 1-10, 17-23, 104-112 and 137-143. In particular the immunodominant site was found to be located within residues 104-112. huTNF regions corresponding to residues 24-36, 56-75, 76-94, and 147-157 resulted to be not or poorly antigenic. However, treatment of huTNF with Triton X-100 under conditions that partially dissociate the oligomeric quaternary structure resulted in the exposition of sites recognized by sera against peptides huTNF [56-75] and huTNF [76-94], suggesting that antigenic sites not accessible in the oligomeric huTNF are exposed in the dissociated form. The principal antigenic sites in the oligomeric molecule are localized in the flexible N-terminal part and in hydrophilic segments located in the "middle/top" region of the molecule, opposite to the C-terminus. Protein segments of the "bottom" region, close to the C-terminus, were poorly immunoreactive. Neutralization assays of TNF cytolytic activity on L-M cells showed that binding of antibodies to epitopes located in the "middle/top" regions of huTNF does not affect its cytolytic activity, supporting the hypothesis of a receptor binding site location at the "bottom" of TNF trimer.
通过研究各种小鼠抗人肿瘤坏死因子α(huTNF)血清与跨越huTNF全序列的合成huTNF片段之间的相互作用,已绘制出huTNF的免疫原性区域。在huTNF的1-23、95-116和137-157位残基内鉴定出三个主要免疫原性区域,在117-136和37-55位残基内鉴定出另外两个免疫原性较弱的区域。通过与同源抗肽血清的结合研究发现,相同的huTNF区域含有抗原位点。用较短的合成亚片段进行的竞争性结合实验为1-10、17-23、104-112和137-143位残基内强抗原位点的定位提供了证据。特别是发现免疫显性位点位于104-112位残基内。对应于24-36、56-75、76-94和147-157位残基的huTNF区域显示无抗原性或抗原性较弱。然而,在部分解离寡聚四级结构的条件下用Triton X-100处理huTNF,导致针对肽huTNF [56-75]和huTNF [76-94]的血清识别的位点暴露,这表明在寡聚huTNF中不可及的抗原位点在解离形式中暴露。寡聚分子中的主要抗原位点位于柔性N末端部分以及位于分子“中间/顶部”区域(与C末端相对)的亲水性片段中。靠近C末端的“底部”区域的蛋白质片段免疫反应性较差。对L-M细胞上TNF细胞溶解活性的中和试验表明,抗体与位于huTNF“中间/顶部”区域的表位结合不会影响其细胞溶解活性,支持了受体结合位点位于TNF三聚体“底部”的假设。