首页> 外文期刊>SAR and QSAR in Environmental Research >Multiple target-based pharmacophore design from active site structures
【24h】

Multiple target-based pharmacophore design from active site structures

机译:来自主动部位结构的多个基于目标的药种光学设计

获取原文
获取原文并翻译 | 示例
           

摘要

Health care systems have benefitted from rational drug discovery processes like vHTS, virtual high throughput screening pharmacophores and quantitative structure-activity relationships, and many challenges have been explored using such techniques: decisions on specificity and selectivity are made after screening millions of molecules for multiple targets. Recent challenges in drug research emphasize the design of drugs that bind with more than one target of interest (multi-target) and do not bind with undesirable targets. This work attempts to use a three-dimensional interaction profile of the active site of a class of proteins, identify selective positions for the binding of functional groups, called features, and develop ensembles of multi-targeted pharmacophores that retain specificity and selectivity. The goal of this study is to develop multi-target pharmacophores by computational methods using protein structures alone to guide the discovery of novel inhibitors of plasmepsins, displaying selectivity over their human homologs, cathepsin D and pepsin. The development of such novel tools is attempted using a combination of different approaches such as the molecular interaction field, clique graph and inductive logic programming to identify and compare specific and selective complementary features. The identification of selective combinations of features has resulted in the design of multi-featured specific and selective pharmacophores that are validated using antimalarial compounds in ChEMBL that are known for their anti-plasmepsin II activity. This novel method is computationally less intensive and is applicable to any known class of target structures for finding specific and selective binders simultaneously.
机译:医疗保健系统受益于VHT的理性药物发现过程,虚拟高通量筛选药理和定量结构 - 活动关系,并且使用这些技术探讨了许多挑战:在筛选数百万分子以进行多个靶标的特异性和选择性的决定。药物研究中最近的挑战强调了与一个以上兴趣目标(多目标)结合的药物的设计,并且与不希望的目标没有结合。该工作试图使用一类蛋白质的活性位点的三维相互作用分布,鉴定用于官能团的结合的选择性位置,称为特征,以及制定维持特异性和选择性的多目标药物团的合奏。本研究的目的是通过单独使用蛋白质结构来指导蛋白质结构来引导蛋白质结构的多目标药理,以指导Plasmepsins的新抑制剂,显示对人类同源物,组织蛋白酶D和胃蛋白酶的选择性。尝试开发这种新颖的工具,使用不同方法,例如分子交互场,集团图形和电感逻辑编程,以识别和比较特定和选择性互补特征。特征的选择性组合的鉴定导致多颗粒特异性和选择性药物的设计设计,其使用抗plasmepsin II活性已知的Chembl中使用的抗体性化合物进行验证。这种新方法在计算上不太密集,并且适用于任何已知类别的靶结构,用于同时寻找特异性和选择性粘合剂。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号