Murray C W, Clark D E, Auton T R, Firth M A, Li J, Sykes R A, Waszkowycz B, Westhead D R, Young S C
Proteus Molecular Design Ltd., Macclesfield, Cheshire, U.K.
J Comput Aided Mol Des. 1997 Mar;11(2):193-207. doi: 10.1023/a:1008094712424.
This paper describes a novel methodology, PRO_SELECT, which combines elements of structure-based drug design and combinatorial chemistry to create a new paradigm for accelerated lead discovery. Starting with a synthetically accessible template positioned in the active site of the target of interest, PRO_SELECT employs database searching to generate lists of potential substituents for each substituent position on the template. These substituents are selected on the basis of their being able to couple to the template using known synthetic routes and their possession of the correct functionality to interact with specified residues in the active site. The lists of potential substituents are then screened computationally against the active site using rapid algorithms. An empirical scoring function, correlated to binding free energy, is used to rank the substituents at each position. The highest scoring substituents at each position can then be examined using a variety of techniques and a final selection is made. Combinatorial enumeration of the final lists generates a library of synthetically accessible molecules, which may then be prioritized for synthesis and assay. The results obtained using PRO_SELECT to design thrombin inhibitors are briefly discussed.
本文介绍了一种新颖的方法PRO_SELECT,它结合了基于结构的药物设计和组合化学的元素,以创建一种加速先导化合物发现的新范式。从位于目标活性位点的可合成获得的模板开始,PRO_SELECT利用数据库搜索为模板上的每个取代基位置生成潜在取代基列表。这些取代基是基于它们能够使用已知合成路线与模板偶联以及它们具有与活性位点中特定残基相互作用的正确官能团而选择的。然后使用快速算法针对活性位点对潜在取代基列表进行计算筛选。使用与结合自由能相关的经验评分函数对每个位置的取代基进行排名。然后可以使用各种技术检查每个位置得分最高的取代基,并做出最终选择。对最终列表进行组合枚举会生成一个可合成获得的分子库,然后可以对其进行合成和测定的优先级排序。简要讨论了使用PRO_SELECT设计凝血酶抑制剂所获得的结果。