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首页> 外文期刊>ACS Omega >Curcumin Allosterically Inhibits the Dengue NS2B-NS3 Protease by Disrupting Its Active Conformation
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Curcumin Allosterically Inhibits the Dengue NS2B-NS3 Protease by Disrupting Its Active Conformation

机译:姜黄素通过中断其主动构象来构思地抑制登革热NS2B-NS3蛋白酶

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Flaviviruses including dengue virus and Zika virus encode a unique two-component NS2B-NS3 protease essential for maturation/infectivity, thus representing a key target for designing antiflavivirus drugs. Here, for the first time, by NMR and molecular docking, we reveal that curcumin allosterically inhibits the dengue protease by binding to a cavity with no overlap with the active site. Further molecular dynamics simulations decode that the binding of curcumin leads to unfolding/displacing the characteristic β-hairpin of the C-terminal NS2B and consequently disrupting the closed (active) conformation of the protease. Our study identified a cavity most likely conserved in all flaviviral NS2B-NS3 proteases, which could thus serve as a therapeutic target for the discovery/design of small-molecule allosteric inhibitors. Moreover, as curcumin has been used as a food additive for thousands of years in many counties, it can be directly utilized to fight the flaviviral infections and as a promising starting for further design of potent allosteric inhibitors.
机译:包括登革热病毒和Zika病毒在内的黄病毒编码了一种独特的双组分NS2B-NS3蛋白酶,其熟化/感染性是必不可少的,因此代表设计抗苜蓿药物的关键靶标。这里,首次通过NMR和分子对接,我们揭示姜黄素通过与活性位点没有重叠的腔体抑制登革热蛋白酶。进一步的分子动力学模拟解码姜黄素的结合导致展开/移位C末端NS2B的特征β-发夹,并因此破坏蛋白酶的闭合(活性)构象。我们的研究确定了所有黄病毒NS2B-NS3蛋白酶最可能保守的腔体,因此可以用作小分子变形抑制剂的发现/设计的治疗靶标。此外,由于姜黄素已被用作许多县数千年的食品添加剂,因此可以直接用于对抗黄病虫害感染,并作为进一步设计有效的颠覆抑制剂的有希望的开始。

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