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分子内免疫信号假说的复兴——以刚果红作为特定工具揭示的信号传导结构背景

Intramolecular immunological signal hypothesis revived--structural background of signalling revealed by using Congo Red as a specific tool.

作者信息

Jagusiak A, Konieczny L, Krol M, Marszalek P, Piekarska B, Piwowar P, Roterman I, Rybarska J, Stopa B, Zemanek G

机构信息

.

Department of Bioinformatics and Telemedicine, Jagiellonian University, Medical College, Lazarza 16, 31- 530 Krakow, Poland..

出版信息

Mini Rev Med Chem. 2015;14(13):1104-13. doi: 10.2174/1389557514666141127150803.

Abstract

Micellar structures formed by self-assembling Congo red molecules bind to proteins penetrating into function-related unstable packing areas. Here, we have used Congo red--a supramolecular protein ligand--to investigate how the intramolecular structural changes that take place in antibodies following antigen binding lead to complement activation. According to our findings, Congo red binding significantly enhances the formation of antigen-antibody complexes. As a result, even low-affinity transiently binding antibodies can participate in immune complexes in the presence of Congo red, although immune complexes formed by these antibodies fail to trigger the complement cascade. This indicates that binding of antibodies to the antigen may not, by itself, fulfill the necessary conditions to generate the signal which triggers effector activity. These findings, together with the results of molecular dynamics simulation studies, enable us to conclude that, apart from the necessary assembling of antibodies, intramolecular structural changes generated by strains which associate high- affinity bivalent antibody fitting to antigen determinants are also required to cross the complement activation threshold.

摘要

由自组装刚果红分子形成的胶束结构与穿透到功能相关不稳定堆积区域的蛋白质结合。在这里,我们使用刚果红——一种超分子蛋白质配体——来研究抗原结合后抗体中发生的分子内结构变化如何导致补体激活。根据我们的发现,刚果红结合显著增强了抗原-抗体复合物的形成。因此,即使是低亲和力的瞬时结合抗体在刚果红存在的情况下也能参与免疫复合物,尽管这些抗体形成的免疫复合物未能触发补体级联反应。这表明抗体与抗原的结合本身可能无法满足产生触发效应器活性信号的必要条件。这些发现,连同分子动力学模拟研究的结果,使我们能够得出结论,除了抗体的必要组装外,由与适合抗原决定簇的高亲和力二价抗体结合的菌株产生的分子内结构变化也需要跨越补体激活阈值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64ac/4440395/7982225d6101/MRMC-14-1104_F1.jpg

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