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In vitro antiviral activity of some uridine derivatives of 2-deoxy sugars against classical swine fever virus.

机译:2-脱氧糖的一些尿苷衍生物对经典猪瘟病毒的体外抗病毒活性。

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Classical swine fever virus glycoproteins: E2, E(rns) (E0) and E1 are detected on the external part of viral particles and play a major role in the initial stages of viral infection. They form heterodimeric and homodimeric complexes needed to effectively infect host cells. Some glycosylation inhibitors, such as tunicamycin, which act at the early stages of glycan chain processing, can influence, not only glycosylation, but also the stability of E2 and E(rns) glycoproteins, effectively inhibiting the formation of glycoprotein complexes and virus yield. In our study we tested two of newly designed uridine derivatives of 2-deoxy sugars, IW3 and IW7 mimicking part of tunicamycin. We showed that inhibitors effectively arrest viral growth with IC(50) of 9 and 7microg/ml respectively, without significant toxicity for mammalian cells. Moreover, IW3 and IW7 reduced the formation of viral glycoproteins E2 and E(rns) in a dose-dependent manner. These compounds were further studied in order to elucidate the molecular mechanism of the antiviral effect using mammalian SK6 and insect Sf9 cell lines. We found that they inhibit N-glycosylation process of viral proteins at the late stage of glycan modification characteristic for mammalian cells. Due to the observed antiviral effect accompanied by low cytotoxicity, these inhibitors are potential candidates for anti-pestivirus therapy.
机译:经典的猪瘟病毒糖蛋白:E2,E(rns)(E0)和E1在病毒颗粒的外部被检测到,并在病毒感染的初始阶段起主要作用。它们形成有效感染宿主细胞所需的异二聚体和同二聚体复合物。一些糖基化抑制剂,例如衣霉素,在糖链加工的早期阶段起作用,不仅会影响糖基化,还会影响E2和E(rns)糖蛋白的稳定性,有效地抑制糖蛋白复合物的形成和病毒产量。在我们的研究中,我们测试了两个新设计的2-脱氧糖尿苷衍生物,模拟衣康霉素的一部分的IW3和IW7。我们表明抑制剂有效阻止病毒生长,IC(50)分别为9和7microg / ml,对哺乳动物细胞无明显毒性。此外,IW3和IW7以剂量依赖性方式减少了病毒糖蛋白E2和E(rns)的形成。为了阐明使用哺乳动物SK6和昆虫Sf9细胞系产生抗病毒作用的分子机制,对这些化合物进行了进一步研究。我们发现它们在哺乳动物细胞的聚糖修饰特征的晚期抑制病毒蛋白的N-糖基化过程。由于观察到的抗病毒作用伴有低细胞毒性,因此这些抑制剂是抗瘟病毒治疗的潜在候选药物。

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