Drexel Institute for Biotechnology and Virology Research, Department of Microbiology and Immunology, Drexel University College of Medicine, Doylestown, PA 18902, United States.
Antiviral Res. 2013 Jun;98(3):432-40. doi: 10.1016/j.antiviral.2013.03.023. Epub 2013 Apr 8.
Host cellular endoplasmic reticulum α-glucosidases I and II are essential for the maturation of viral glycosylated envelope proteins that use the calnexin mediated folding pathway. Inhibition of these glycan processing enzymes leads to the misfolding and degradation of these viral glycoproteins and subsequent reduction in virion secretion. We previously reported that, CM-10-18, an imino sugar α-glucosidase inhibitor, efficiently protected the lethality of dengue virus infection of mice. In the current study, through an extensive structure-activity relationship study, we have identified three CM-10-18 derivatives that demonstrated superior in vitro antiviral activity against representative viruses from four viral families causing hemorrhagic fever. Moreover, the three novel imino sugars significantly reduced the mortality of two of the most pathogenic hemorrhagic fever viruses, Marburg virus and Ebola virus, in mice. Our study thus proves the concept that imino sugars are promising drug candidates for the management of viral hemorrhagic fever caused by variety of viruses.
宿主细胞内质网 α-葡萄糖苷酶 I 和 II 对于使用 calnexin 介导的折叠途径的病毒糖基化包膜蛋白的成熟至关重要。这些糖加工酶的抑制导致这些病毒糖蛋白的错误折叠和降解,随后病毒粒子分泌减少。我们之前报道过,CM-10-18,一种亚氨基糖 α-葡萄糖苷酶抑制剂,有效地保护了登革热病毒感染小鼠的致死性。在当前的研究中,通过广泛的构效关系研究,我们已经确定了三种 CM-10-18 衍生物,它们对来自引起出血热的四个病毒科的代表性病毒表现出优异的体外抗病毒活性。此外,这三种新型亚氨基糖显著降低了两种最具致病性的出血热病毒——马尔堡病毒和埃博拉病毒——在小鼠中的死亡率。因此,我们的研究证明了亚氨基糖是管理由多种病毒引起的病毒性出血热的有前途的药物候选物的概念。