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首页> 外文期刊>Journal of molecular graphics & modelling >Allosteric pocket of the dengue virus (serotype 2) NS2B/NS3 protease: In silico ligand screening and molecular dynamics studies of inhibition
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Allosteric pocket of the dengue virus (serotype 2) NS2B/NS3 protease: In silico ligand screening and molecular dynamics studies of inhibition

机译:登革热病毒(2型血清)NS2B / NS3蛋白酶的变构口袋:计算机配体筛选和抑制分子动力学研究

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The allosteric pocket of the Dengue virus (DENV2) NS2B/NS3 protease, which is proximal to its catalytic triad, represents a promising drug target (Othman et al., 2008). We have explored this binding site through large-scale virtual screening and molecular dynamics simulations followed by calculations of binding free energy. We propose two mechanisms for enzyme inhibition. A ligand may either destabilize electronic density or create steric effects relating to the catalytic triad residues NS3-H1S51, NS3-ASP75, and NS3-SER135. A ligand may also disrupt movement of the C-terminal of NS2B required for inter-conversion between the "open" and "closed" conformations. We found that chalcone and adenosine derivatives had the top potential for drug discovery hits, acting through both inhibitory mechanisms. Studying the molecular mechanisms of these compounds might be helpful in further investigations of the allosteric pocket and its potential for drug discovery. (C) 2014 Elsevier Inc. All rights reserved,
机译:登革热病毒(DENV2)NS2B / NS3蛋白酶的变构口袋靠近其催化三联体,代表了有希望的药物靶标(Othman et al。,2008)。我们通过大规模的虚拟筛选和分子动力学模拟,然后计算结合自由能,探索了这个结合位点。我们提出了两种抑制酶的机制。配体可能使电子密度不稳定或产生与催化三联体残基NS3-H1S51,NS3-ASP75和NS3-SER135有关的空间效应。配体还可破坏“开放”和“封闭”构象之间的相互转化所需的NS2B C末端的运动。我们发现查耳酮和腺苷衍生物具有通过两种抑制机制发挥作用的最大的药物发现热点。研究这些化合物的分子机制可能有助于进一步研究变构口袋及其潜在的药物发现。 (C)2014 Elsevier Inc.保留所有权利,

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