LEVINE B B
J Exp Med. 1963 Jan 1;117(1):161-83. doi: 10.1084/jem.117.1.161.
Rabbit antisera prepared against conjugates of the benzylpenicilloyl (BPO) bifunctional haptenic group were analyzed to determine whether the antibodies are adapted to only a portion of the large BPO molecule, or to the entire molecule, and whether specificity extends to the lysine side chain and adjoining structures of the immunizing carrier protein. No antibodies adapted to the phenylacetylamine portion of the BPO group could be detected in a pooled rabbit anti-BPO serum globulin fraction by PCA and quantitative precipitin analysis using several phenylacetylamine-protein conjugates as antigens. No antibodies adapted only to the thiazolidine carboxylic acid portion of the BPO molecule were detected in the anti-BPO globulin fraction using quantitative precipitin and hapten inhibition methods. At least the bulk of the anti-BPO antibodies was found to be adapted to the entire BPO haptenic group. By quantitative hapten inhibition of precipitation of the anti-BPO globulin fraction, the anti-BPO antibodies were found to show specificity for a 6 carbon amide side chain corresponding to the lysine side chain through which BPO groups are bound predominantly to protein. The contribution of this 6 carbon chain to antibody-hapten binding was small; (-DeltaF degrees ) was calculated to be 460 calories per mole (average). Rabbit anti-BPO antibodies prepared against BPO-rabbit serum albumin conjugates showed specificity also toward structures of the immunizing carrier protein, and possibly toward secondary or tertiary structural configurations. Penicilloyl conjugates of rabbit serum albumin precipitated from 3 individual rabbit antisera more anti-BPO antibodies than did penicilloyl conjugates of heterologous carriers (poly-L-lysine, human serum albumin, and human gamma-globulin). Anti-BPO antibodies demonstrated heterogeneity with regard to closeness of fit to the haptenic group, or with regard to the dimensions of the combining sites, or both. It was concluded that at least a large part of anti-BPO antibodies are specifically adapted to a large antigenic unit comprised of the entire BPO group, the lysine side chain, and structural configurations of the immunizing carrier protein.
对针对苄青霉素酰基(BPO)双功能半抗原基团偶联物制备的兔抗血清进行了分析,以确定抗体是仅适应大BPO分子的一部分,还是适应整个分子,以及特异性是否延伸至免疫载体蛋白的赖氨酸侧链和相邻结构。通过PCA以及使用几种苯乙酰胺 - 蛋白质偶联物作为抗原的定量沉淀素分析,在混合的兔抗BPO血清球蛋白组分中未检测到适应BPO基团苯乙酰胺部分的抗体。使用定量沉淀素和半抗原抑制方法,在抗BPO球蛋白组分中未检测到仅适应BPO分子噻唑烷羧酸部分的抗体。发现至少大部分抗BPO抗体适应整个BPO半抗原基团。通过对抗BPO球蛋白组分沉淀的定量半抗原抑制,发现抗BPO抗体对与赖氨酸侧链相对应的6碳酰胺侧链具有特异性,BPO基团主要通过该侧链与蛋白质结合。该6碳链对抗体 - 半抗原结合的贡献很小;计算得出(-ΔF°)平均为每摩尔460卡路里。针对BPO - 兔血清白蛋白偶联物制备的兔抗BPO抗体也显示出对免疫载体蛋白结构的特异性,并且可能对二级或三级结构构型具有特异性。从3只个体兔抗血清中沉淀出的兔血清白蛋白的青霉素酰基偶联物比异源载体(聚-L-赖氨酸、人血清白蛋白和人γ-球蛋白)的青霉素酰基偶联物沉淀出更多的抗BPO抗体。抗BPO抗体在与半抗原基团的契合紧密程度、结合位点的尺寸或两者方面表现出异质性。得出的结论是,至少大部分抗BPO抗体特异性地适应由整个BPO基团、赖氨酸侧链和免疫载体蛋白的结构构型组成的大抗原单位。