Nayak B P, Tuteja R, Manivel V, Roy R P, Vishwakarma R A, Rao K V
Immunology Group, International Center for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, India.
J Immunol. 1998 Oct 1;161(7):3510-9.
The influence of imposing various conformational constraints on immune responses to a model epitope within a synthetic peptide immunogen was examined in mice. Although overall immunogenicity was affected, the model epitope (sequence DPAF) remained the predominant recognition site regardless of the conformation in which it was presented. A comparison of anti-DPAF mAbs obtained in response to two analogue peptides, PS1CT3 and CysCT3, in which the DPAF segment was either unconstrained or held within a cyclic loop, respectively, revealed a significant homology in the paratope composition. At one level a subset of anti-PS1CT3 and anti-CysCT3 mAbs was found to share a common heavy chain variable region. In addition, nucleotide sequence homology comparisons of both heavy and light chain variable regions identified the presence of anti-PS1CT3 and anti-CysCT3 mAbs that collectively appeared to derive from a common progenitor, but with nonidentical somatic mutations. Interestingly, however, no bias toward homologous Ag could be discerned on measurement of relative affinities of the mAbs for the two peptides. In contrast, mAb binding on-rates clearly discriminated between peptides representing the homologous vs the heterologous confomer of the DPAF epitope. Thus, it would appear that the kinetics of Ag recognition dominate over equilibrium binding criteria both in epitope-driven repertoire selection and Ab maturation in a humoral response.
在小鼠中研究了对合成肽免疫原内的模型表位施加各种构象限制对免疫反应的影响。尽管整体免疫原性受到影响,但无论模型表位(序列DPAF)以何种构象呈现,它仍然是主要的识别位点。对分别针对两种类似肽PS1CT3和CysCT3产生的抗DPAF单克隆抗体进行比较,其中DPAF片段在PS1CT3中无限制,而在CysCT3中则位于一个环内,结果显示互补决定区组成存在显著同源性。在一个层面上,发现一部分抗PS1CT3和抗CysCT3单克隆抗体共享一个共同的重链可变区。此外,对重链和轻链可变区的核苷酸序列同源性比较确定,存在一些抗PS1CT3和抗CysCT3单克隆抗体,它们似乎共同源自一个共同的祖细胞,但具有不同的体细胞突变。然而,有趣的是,在测量单克隆抗体对这两种肽的相对亲和力时,未发现对同源抗原的偏向性。相反,单克隆抗体的结合速率能够明确区分代表DPAF表位同源构象与异源构象的肽。因此,在体液免疫反应的表位驱动的库选择和抗体成熟过程中,抗原识别的动力学似乎比平衡结合标准更为重要。