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Development of a dual-functional conjugate of antigenic peptide and Fc-III mimetics (DCAF) for targeted antibody blocking

机译:抗原肽和Fc-III模拟物(DCAF)的双重功能偶联物的开发可用于靶向抗体封闭

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摘要

Targeted antibody blocking enables characterization of binding sites on immunoglobulin G (IgG), and can efficiently eliminate harmful antibodies from organisms. In this report, we present a novel peptide—denoted as a dual-functional conjugate of antigenic peptide and Fc-III mimetics (DCAF)—for targeted blocking of antibodies. Synthesis of DCAF was achieved by native chemical ligation, and the molecule consists of three functional parts: a specific antigenic peptide, a linker and the Fc-III mimetic peptide, which has a high affinity toward the Fc region of IgG molecules. We demonstrate that DCAF binds the cognate antibody with high selectivity by simultaneously binding to the Fab and Fc regions of IgG. Animal experiments revealed that DCAF molecules diminish the antibody-dependent enhancement effect in a dengue virus infection model, and rescue the acetylcholine receptor by inhibiting the complement cascade in a myasthenia gravis model. These results suggest that DCAFs could have utility in the development of new therapeutics against harmful antibodies.
机译:靶向抗体阻断可以表征免疫球蛋白G(IgG)上的结合位点,并可以有效地消除生物体中的有害抗体。在本报告中,我们提出了一种新型肽-靶向抗原肽和Fc-III模拟物(DCAF)的双功能偶联物-用于抗体的靶向阻断。 DCAF的合成是通过天然化学连接实现的,该分子由三个功能部分组成:特异性抗原肽,接头和Fc-III模拟肽,它们对IgG分子的Fc区具有高度亲和力。我们证明DCAF通过同时结合到IgG的Fab和Fc区以高选择性结合同源抗体。动物实验表明,DCAF分子在登革热病毒感染模型中减弱了抗体依赖性增强作用,并通过抑制重症肌无力模型中的补体级联反应来拯救乙酰胆碱受体。这些结果表明DCAFs可以在开发新的抗有害抗体疗法中发挥作用。

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