Agius M A, Geannopoulos C J, Fairclough R H, Richman D P
Department of Neurology, University of Chicago, IL 60637.
J Immunol. 1988 Jan 1;140(1):62-8.
To analyze components of the idiotypic network in experimental autoimmune disease, we produced 17 isogeneic anti-idiotopic monoclonal antibodies (anti-Id) against two experimental autoimmune myasthenia gravis-producing anti-acetylcholine receptor (anti-AChR) monoclonal antibodies. We studied the binding of five of the anti-Id to the anti-AChR monoclonal antibodies bearing the complementary idiotopes (Id-mAb). They bound with Kd values ranging from 0.06 to 0.86 nM, values comparable to those of Id-mAb:AChR complexes (0.26 and 0.34 nM). All of the anti-Id tested moderately inhibited the binding of AChR to Id-mAb, whereas for each anti-Id, AChR either strongly inhibited anti-Id binding or had no effect on anti-Id binding. Hence, the inhibition of Id-mAb:AChR binding by anti-Id was not reciprocal with the inhibition of anti-Id:Id-mAb binding by AChR. For each anti-Id, the relative affinities of anti-Id and AChR for Id-mAb together with the lack of symmetry of inhibition by anti-Id compared to inhibition by AChR indicate that these two "ligands" are not competitive inhibitors. Consequently, anti-Id and AChR do not bind to overlapping sites on the Id-mAb, suggesting that the observed inhibition is mediated allosterically. This may be a common mechanism of anti-Id:Id binding, which would have important implications for the mechanism of anti-Id-induced suppression.
为分析实验性自身免疫病中独特型网络的组成成分,我们针对两种产生实验性自身免疫性重症肌无力的抗乙酰胆碱受体(anti - AChR)单克隆抗体,制备了17种同基因抗独特型单克隆抗体(anti - Id)。我们研究了其中5种anti - Id与带有互补独特型表位的anti - AChR单克隆抗体(Id - mAb)的结合情况。它们的结合解离常数(Kd)值在0.06至0.86 nM之间,与Id - mAb:AChR复合物的Kd值(0.26和0.34 nM)相当。所有测试的anti - Id均适度抑制AChR与Id - mAb的结合,然而对于每种anti - Id,AChR要么强烈抑制anti - Id的结合,要么对anti - Id的结合没有影响。因此,anti - Id对Id - mAb:AChR结合的抑制与AChR对anti - Id:Id - mAb结合的抑制并非相互的。对于每种anti - Id,anti - Id和AChR对Id - mAb的相对亲和力,以及与AChR抑制相比anti - Id抑制缺乏对称性,表明这两种“配体”不是竞争性抑制剂。因此,anti - Id和AChR不会结合到Id - mAb上的重叠位点,这表明观察到的抑制是通过变构调节介导的。这可能是anti - Id:Id结合的一种常见机制,这对anti - Id诱导的抑制机制具有重要意义。