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首页> 外文期刊>Journal of the Royal Society Interface >Hierarchical virtual screening for the discovery of new molecular scaffolds in antibacterial hit identification
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Hierarchical virtual screening for the discovery of new molecular scaffolds in antibacterial hit identification

机译:分层虚拟筛选用于发现细菌命中新分子支架

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摘要

One of the initial steps of modern drug discovery is the identification of small organic molecules able to inhibit a target macromolecule of therapeutic interest. A small proportion of these hits are further developed into lead compounds, which in turn may ultimately lead to a marketed drug. A commonly used screening protocol used for this task is high-throughput screening (HTS). However, the performance of HTS against antibacterial targets has generally been unsatisfactory, with high costs and low rates of hit identification. Here, we present a novel computational methodology that is able to identify a high proportion of structurally diverse inhibitors by searching unusually large molecular databases in a time-, cost- and resource-efficient manner. This virtual screening methodology was tested prospectively on two versions of an antibacterial target (type II dehydroquinase from Mycobacterium tuberculosis and Streptomyces coelicolor), for which HTS has not provided satisfactory results and consequently practically all known inhibitors are derivatives of the same core scaffold. Overall, our protocols identified 100 new inhibitors, with calculated K_i ranging from 4 to 250 (confirmed hit rates are 60% and 62% against each version of the target). Most importantly, over 50 new active molecular scaffolds were discovered that underscore the benefits that a wide application of prospectively validated in silico screening tools is likely to bring to antibacterial hit identification.
机译:现代药物发现的初始步骤之一是鉴定能够抑制治疗目标大分子的有机小分子。这些命中的一小部分会进一步发展为先导化合物,进而可能最终导致市场上销售的药物。用于此任务的常用筛选方案是高通量筛选(HTS)。但是,HTS对抗菌靶标的性能通常不令人满意,其成本高且命中率低。在这里,我们提出了一种新颖的计算方法,该方法能够通过以时间,成本和资源效率高的方式搜索异常大的分子数据库来鉴定高比例的结构多样的抑制剂。在两个版本的抗菌靶标(结核分枝杆菌的II型脱氢奎宁酶和coelicolor链霉菌)上对该虚拟筛选方法进行了前瞻性测试,HTS未能提供令人满意的结果,因此,实际上所有已知的抑制剂都是同一核心支架的衍生物。总体而言,我们的方案确定了100种新的抑制剂,计算的K_i范围为4至250(确认的命中率分别是针对每种靶标的60%和62%)。最重要的是,发现了50多种新的活性分子支架,这些支架强调了前瞻性验证的计算机筛选工具的广泛应用可能带来的抗菌命中鉴定的益处。

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