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首页> 外文期刊>Journal of Medicinal Chemistry >Optimization of Furin Inhibitors To Protect against the Activation of Influenza Hemagglutinin H5 and Shiga Toxin
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Optimization of Furin Inhibitors To Protect against the Activation of Influenza Hemagglutinin H5 and Shiga Toxin

机译:优化弗林蛋白酶抑制剂以防止流感血凝素H5和志贺毒素的激活

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摘要

Proprotein convertases (PCs) are crucial in the processing and entry of viral or bacterial protein precursors and confer increased infectivity of pathogens bearing a PC activation site, which results in increased symptom severity and lethality. Previously, we developed a nanomolar peptide inhibitor of PCs to prevent PC activation of infectious agents. Herein, we describe a peptidomimetic approach that increases the stability of this inhibitor for use in vivo to prevent systemic infections and cellular damage, such as that caused by influenza H5N1 and Shiga toxin. The addition of azaβ~3-amino acids to both termini of the peptide successfully prevented influenza hemagglutinin 5 fusogenicity and Shiga toxin Vero toxicity in cell-based assays. The results from a cell-based model using stable shRNA-induced proprotein convertase knockdown indicate that only furin is the major proprotein convertase required for HA5 cleavage.
机译:前蛋白转化酶(PCs)在病毒或细菌蛋白前体的加工和进入过程中至关重要,并赋予携带PC激活位点的病原体增加感染力,从而导致症状严重程度和致死性增加。以前,我们开发了PC的纳摩尔肽抑制剂来防止PC激活感染因子。在本文中,我们描述了一种拟肽方法,该方法可提高该抑制剂的稳定性,以用于体内预防全身性感染和细胞损伤,例如由H5N1流感和志贺毒素引起的损伤。在基于细胞的分析中,向肽的两个末端都添加azaβ〜3-氨基酸可成功预防流感血凝素5的致融合性和Shiga毒素Vero毒性。使用稳定的shRNA诱导的前蛋白转化酶敲低的基于细胞的模型的结果表明,只有弗林蛋白酶是HA5裂解所需的主要前蛋白转化酶。

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