三元免疫复合物形成和交叉反应的结构洞察:抗免疫复合物 FabB12 与 Fab220-睾酮复合物的结合。

Veikko Eronen, Kristiina Takkinen, Annika Torni, Kaichen Peng, Janne Jänis, Tarja Parkkinen, Nina Hakulinen, Juha Rouvinen
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引用次数: 0

摘要

抗免疫复合物(Anti-IC)抗体已被用于开发检测小分子分析物(合子)的非竞争性免疫测定。这些抗体能特异性地与与合酶复合物结合的一抗结合。虽然已经开发出了几种基于抗 IC 抗体的免疫分析方法,但对这些系统的结构研究却非常有限。在本研究中,我们测定了与睾酮复合物的抗睾酮抗体 Fab220 和相应的抗 IC 抗体 FabB12 的晶体结构。我们使用 LightDock 和 AlphaFold 预测了睾酮、Fab220 和 FabB12 的三元复合物结构。该三元复合物的抗体界面较大(约 1100 Å2)。与 Fab220 结合的睾酮的 A 环也参与了抗 IC 抗体的结合。原生质谱对结构分析进行了补充。对睾酮(TES)和三种交叉反应类固醇[双氢睾酮(DHT)、雄烯二酮(A4)和硫酸脱氢表雄酮(DHEA-S)]的亲和力进行了测定,并对三元复合物的形成进行了研究。结果清楚地显示了溶液中三元复合物的形成。虽然 DHT 表现出明显的交叉反应,但 A4 和 DHEA-S 表现出轻微的交叉反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural insights into ternary immunocomplex formation and cross-reactivity: binding of an anti-immunocomplex FabB12 to Fab220-testosterone complex.

Anti-immunocomplex (Anti-IC) antibodies have been used in developing noncompetitive immunoassays for detecting small molecule analytics (haptens). These antibodies bind specifically to the primary antibody in complex with hapten. Although several anti-IC antibody-based immunoassays have been developed, structural studies of these systems are very limited. In this study, we determined the crystal structures of anti-testosterone Fab220 in complex with testosterone and the corresponding anti-IC antibody FabB12. The structure of the ternary complex of testosterone, Fab220, and FabB12 was predicted using LightDock and AlphaFold. The ternary complex has a large (~ 1100 Å2) interface between antibodies. The A-ring of the testosterone bound by Fab220 also participates in the binding of the anti-IC antibody. The structural analysis was complemented by native mass spectrometry. The affinities for testosterone (TES) and three cross-reactive steroids [dihydrotestosterone (DHT), androstenedione (A4), and dehydroepiandrosterone sulfate (DHEA-S)] were measured, and ternary complex formation was studied. The results clearly show the ternary complex formation in the solution. Although DHT showed significant cross-reactivity, A4 and DHEA-S exhibited minor cross-reactivity.

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