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Crabohydrate-Related Inhibitors of Dengue Virus Entry

机译:糖相关的登革热病毒抑制剂

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摘要

Dengue virus (DENV), which is transmitted by Aedes mosquitoes, causes fever and hemorrhagic disorders in humans. The virus entry process mediated through host receptor molecule(s) is crucial for virus propagation and the pathological progression of dengue disease. Therefore, elucidation of the molecular mechanisms underlying virus entry is essential for an understanding of dengue pathology and for the development of effective new anti-dengue agents. DENV binds to its receptor molecules mediated through a viral envelope (E) protein, followed by incorporation of the virus-receptor complex inside cells. The fusion between incorporated virus particles and host endosome membrane under acidic conditions is mediated through the function of DENV E protein. Carbohydrate molecules, such as sulfated glycosaminoglycans (GAG) and glycosphingolipids, and carbohydrate-recognition proteins, termed lectins, inhibit virus entry. This review focuses on carbohydrate-derived entry inhibitors, and also introduces functionally related compounds with similar inhibitory mechanisms against DENV entry.
机译:由伊蚊传播的登革热病毒(DENV)引起人类发烧和出血性疾病。通过宿主受体分子介导的病毒进入过程对于病毒传播和登革热疾病的病理进展至关重要。因此,阐明病毒进入的分子机制对于了解登革热病理和开发有效的新型抗登革热药物至关重要。 DENV结合通过病毒包膜(E)蛋白介导的受体分子,然后将病毒-受体复合物掺入细胞内部。酸性条件下掺入的病毒颗粒与宿主内体膜之间的融合是通过DENV E蛋白的功能介导的。碳水化合物分子,例如硫酸化的糖胺聚糖(GAG)和糖鞘脂,以及称为凝集素的碳水化合物识别蛋白,可抑制病毒进入。这篇综述着重于碳水化合物衍生的进入抑制剂,并介绍了具有类似抑制DENV进入机制的功能相关化合物。

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