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虚拟筛选中绝对立体化学重要性的计算验证

Computational validation of the importance of absolute stereochemistry in virtual screening.

作者信息

Brooks Wesley H, Daniel Kenyon G, Sung Shen-Shu, Guida Wayne C

机构信息

High Throughput Screening and Chemistry Core and Drug Discovery Program, H. Lee Moffitt Cancer Center & Research Institute, Tampa, Florida 33612, USA.

出版信息

J Chem Inf Model. 2008 Mar;48(3):639-45. doi: 10.1021/ci700358r. Epub 2008 Feb 12.

Abstract

Consideration of stereochemistry early in the identification and optimization of lead compounds can improve the efficiency and efficacy of the drug discovery process and reduce the time spent on subsequent drug development. These improvements can result by focusing on specific enantiomers that have the desired potential therapeutic effect (eutomers), while removing from consideration enantiomers that may have no, or even undesirable, effects (distomers). A virtual screening campaign that correctly takes stereochemical information into account can, in theory, be utilized to provide information about the relative binding affinities of enantiomers. Thus, the proper enumeration of the relevant stereoisomers in general, and enantiomeric pairs in particular, of chiral compounds is crucial if one is to use virtual screening as an effective drug discovery tool. As is obvious, in cases where no stereochemical information is provided for chiral compounds in a 2D chemical database, then each possible stereoisomer should be generated for construction of the subsequent 3D database to be used for virtual screening. However, acute problems can arise in 3D database construction when relative stereochemistry is encoded in a 2D database for a chiral compound containing multiple stereogenic atoms but absolute stereochemistry is not implied. In this case, we report that generation of enantiomeric pairs is imperative in database development if one is to obtain accurate docking results. A study is described on the impact of the neglect of enantiomeric pairs on virtual screening using the human homolog of murine double minute 2 (MDM2) protein, the product of a proto-oncogene, as the target. Docking in MDM2 with GLIDE 4.0 was performed using the NCI Diversity Set 3D database and, for comparison, a set of enantiomers we created corresponding to mirror image structures of the single enantiomers of chiral compounds present in the NCI Diversity Set. Our results demonstrate that potential lead candidates may be overlooked when databases contain 3D structures representing only a single enantiomer of racemic chiral compounds.

摘要

在先导化合物的鉴定和优化早期考虑立体化学,可以提高药物发现过程的效率和效力,并减少后续药物开发所花费的时间。通过关注具有所需潜在治疗效果的特定对映体(优映体),同时不考虑可能没有效果甚至具有不良效果的对映体(劣映体),可以实现这些改进。理论上,一个正确考虑立体化学信息的虚拟筛选活动可用于提供有关对映体相对结合亲和力的信息。因此,如果要将虚拟筛选用作有效的药物发现工具,对手性化合物的相关立体异构体,特别是对映体对进行正确枚举至关重要。显然,在二维化学数据库中未提供手性化合物立体化学信息的情况下,应生成每种可能的立体异构体以构建用于虚拟筛选的后续三维数据库。然而,当相对立体化学编码在包含多个立体ogenic原子但未暗示绝对立体化学的手性化合物的二维数据库中时,三维数据库构建中可能会出现严重问题。在这种情况下,我们报告说,如果要获得准确的对接结果,在数据库开发中生成对映体对是必不可少的。本文描述了一项研究,该研究以原癌基因产物小鼠双微体2(MDM2)蛋白的人类同源物为靶点,探讨了忽略对映体对在虚拟筛选中的影响。使用NCI多样性集3D数据库,以及作为比较,使用我们创建的一组对应于NCI多样性集中手性化合物单一对映体镜像结构的对映体,利用GLIDE 4.0在MDM2中进行对接。我们的结果表明,当数据库包含仅代表外消旋手性化合物单一对映体的三维结构时,潜在的先导候选物可能会被忽略。

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