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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Visualizing protein-ligand binding with chemical energy-wise decomposition (CHEWD): application to ligand binding in the kallikrein-8 S1 Site
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Visualizing protein-ligand binding with chemical energy-wise decomposition (CHEWD): application to ligand binding in the kallikrein-8 S1 Site

机译:可视化蛋白质 - 配体与化学能量明智分解的结合(Chewd):在Kallikrein-8 S1位点中的配体结合施用

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摘要

Kallikrein-8, a serine protease, is a target for structure-based drug design due to its therapeutic potential in treating Alzheimer's disease and is also useful as a biomarker in ovarian cancer. We present a binding assessment of ligands to kallikrein-8 using a residue-wise decomposition of the binding energy. Binding of four putative inhibitors of kallikrein-8 is investigated through molecular dynamics simulation and ligand binding energy evaluation with two methods (MM/PBSA and WaterSwap). For visualization of the residue-wise decomposition of binding energies, chemical energy-wise decomposition or CHEWD is introduced as a plugin to UCSF Chimera and Pymol. CHEWD allows easy comparison between ligands using individual residue contributions to the binding energy. Molecular dynamics simulations indicate one ligand binds stably to the kallikrein-8 S1 binding site. Comparison with other members of the kallikrein family shows that residues responsible for binding are specific to kallikrein-8. Thus, ZINC02927490 is a promising lead for development of novel kallikrein-8 inhibitors.
机译:Kallikrein-8,一种丝氨酸蛋白酶,是由于其治疗阿尔茨海默病的治疗潜力,是基于结构的药物设计的目标,并且在卵巢癌中也可用作生物标志物。我们使用结合能量的残基分解向Kallikrein-8呈现配体对Kallikrein-8的结合评估。通过分子动力学模拟和配体结合能量评估,研究了用两种方法(mm / pbsa和水浴树)来研究四种推定的kallikrein-8推定抑制剂的结合。为了可视化结合能的残留物分解,将化学能量明智分解或嵌入作为插入UCSF嵌合体和聚合物。咀嚼允许使用单独的残留贡献对结合能量来轻松比较。分子动力学模拟表示一种配体稳定地与Kallikrein-8S1结合位点结合。与Kallikrein家族的其他成员的比较表明,负责结合的残留物特异于Kallikrein-8。因此,ZINC02927490是开发新型Kallikrein-8抑制剂的有前途的铅。

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