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Searching for drug leads targeted to the hydrophobic cleft of dengue virus capsid protein

机译:寻找靶向登革热病毒衣壳蛋白疏水裂隙的药物线索

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摘要

We synthesised and screened 18 aromatic derivatives of guanylhydrazones and oximes aromatic for their capacity to bind to dengue virus capsid protein (DENVC). The intended therapeutic target was the hydrophobic cleft of DENVC, which is a region responsible for its anchoring in lipid droplets in the infected cells. The inhibition of this process completely suppresses virus infectivity. Using NMR, we describe five compounds able to bind to the α1-α2 interface in the hydrophobic cleft. Saturation transfer difference experiments showed that the aromatic protons of the ligands are important for the interaction with DENVC. Fluorescence binding isotherms indicated that the selected compounds bind at micromolar affinities, possibly leading to binding-induced conformational changes. NMR-derived docking calculations of ligands showed that they position similarly in the hydrophobic cleft. Cytotoxicity experiments and calculations of in silico drug properties suggest that these compounds may be promising candidates in the search for antivirals targeting DENVC.
机译:我们合成并筛选了 18 种鸟苷腙和芳香肟的芳香衍生物,以了解它们与登革热病毒衣壳蛋白 (DENVC) 结合的能力。预期的治疗靶点是 DENVC 的疏水裂隙,该区域负责将其锚定在受感染细胞的脂滴中。抑制这个过程完全抑制了病毒的传染性。使用 NMR,我们描述了五种能够与疏水裂隙中的 α1-α2 界面结合的化合物。饱和转移差异实验表明,配体的芳香质子对于与 DEENVC 的相互作用很重要。荧光结合等温线表明,所选化合物以微摩尔亲和力结合,可能导致结合诱导的构象变化。配体的 NMR 衍生对接计算表明,它们在疏水裂隙中的位置相似。细胞毒性实验和计算机药物特性的计算表明,这些化合物可能是寻找靶向 DENVC 的抗病毒药物的有希望的候选者。

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