Tuteja R, Agarwal A, Vijayakrishnan L, Nayak B P, Gupta S K, Kumar V, Rao K V
Immunology Group, International Center for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, India.
Immunol Cell Biol. 1997 Jun;75(3):245-52. doi: 10.1038/icb.1997.38.
This report analyses murine primary humoral recognition of a linear domain (MEP 17-31) within a 100 amino acid polypeptide, MEP-1. An analysis of the early primary IgM response revealed that MEP 17-31 presented at least two distinct domains for pre-immune B cell recognition represented by MEP-1 residues 19-23 and 26-28. However, subsequent maturation into an IgG response saw an exclusive selection for the anti-MEP 19-23 component with loss of all alternate specificities. The IgM response to MEP 19-23 was oligoclonal and composed of diverse paratope phenotypes as evidenced by varied heavy chains of immunoglobulin V-D-J combinations and CDR3 sequences. In contrast to the oligoclonality of IgM mAb, the mature IgG response to MEP 19-23 appeared to derive predominantly from a single progenitor. It therefore appears that maturation of primary humoral responses to polypeptide antigens involves two distinct levels of selection. While there is selection for a restricted subset of the initially induced antibody fine-specificities, progression of the response also entails a reduction in clonal heterogeneity of B cells responding to the dominant epitope.
本报告分析了小鼠对100个氨基酸的多肽MEP-1中一个线性结构域(MEP 17 - 31)的初次体液识别。对早期初次IgM应答的分析显示,MEP 17 - 31呈现出至少两个不同的结构域,用于免疫前B细胞识别,分别由MEP-1的19 - 23位残基和26 - 28位残基代表。然而,随后成熟为IgG应答时,仅选择了抗MEP 19 - 23成分,所有其他特异性均丧失。对MEP 19 - 23的IgM应答是寡克隆性的,由多种互补决定区表型组成,免疫球蛋白V-D-J组合的重链和CDR3序列的多样性证明了这一点。与IgM单克隆抗体的寡克隆性相反,对MEP 19 - 23的成熟IgG应答似乎主要来自单个祖细胞。因此,对多肽抗原的初次体液应答的成熟似乎涉及两个不同层次的选择。虽然对最初诱导的抗体精细特异性的一个受限子集进行了选择,但应答的进展也需要减少对显性表位作出反应的B细胞的克隆异质性。