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Antiviral activity of chondroitin sulphate E targeting dengue virus envelope protein.

机译:硫酸软骨素E靶向登革热病毒病毒包膜蛋白的抗病毒活性。

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Sulphated glycosaminoglycans such as heparin inhibit the early step of dengue virus infection through interaction with envelope (E) protein. Here, we found that chondroitin sulphate E (CSE), but not CSD, which contains the same degree of sulphation, inhibited dengue virus (DENV) infection of cells with adsorption. CSE significantly reduced infectivity of all dengue virus serotypes to BHK-21 and Vero cells. DENV preferentially bound to CSE immobilised on plastic plates. Also, virus binding to CSE or heparin was cross-inhibited by soluble CSE or heparin. These findings suggested that common carbohydrate determinants on CSE and heparin could be essential epitopes for interaction of DENV, and may be responsible for inhibition of the early steps of DENV infection. A recombinant E protein directly bound heparin and CSE, but not CSD, meaning that interaction of CSE with E protein contributes to the inhibitory action of this glycosaminoglycan. These observations indicate that a specific carbohydrate structure rather than polysulphation or addition of negative charges of the glycosaminoglycan molecule would be necessary for direct binding to DENV E protein. In conclusion, CSE showed antiviral activity as an entry inhibitor targeting E protein of dengue virus.
机译:硫酸化的糖胺聚糖(例如肝素)通过与包膜(E)蛋白的相互作用抑制登革热病毒感染的早期步骤。在这里,我们发现硫酸软骨素E(CSE)而非CSD(包含相同的硫酸化程度)通过吸附抑制了登革病毒(DENV)细胞的感染。 CSE显着降低了所有登革热病毒血清型对BHK-21和Vero细胞的感染性。 DENV优先结合固定在塑料板上的CSE。而且,与CSE或肝素结合的病毒被可溶性CSE或肝素交叉抑制。这些发现表明,CSE和肝素上常见的碳水化合物决定簇可能是DENV相互作用的重要表位,并且可能是抑制DENV感染的早期步骤。重组E蛋白直接结合肝素和CSE,但不结合CSD,这意味着CSE与E蛋白的相互作用有助于这种糖胺聚糖的抑制作用。这些观察结果表明,对于直接结合DENV E蛋白而言,特定的碳水化合物结构而不是多硫酸化或糖胺聚糖分子的负电荷的添加将是必需的。总之,CSE显示出作为针对登革热E蛋白的进入抑制剂的抗病毒活性。

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