Villar H O, Koehler R T
Telik, Inc., Discovery Technologies Division, 750 Gateway Blvd., South San Francisco, CA 94080, USA.
Mol Divers. 2000;5(1):13-24. doi: 10.1023/a:1011326914800.
Different representations of molecules, based on distinct sets of properties can yield different perspectives of the issues involved in library design. In particular, different chemical representations can give rise to very different estimates of required library sizes. We provide a preliminary mathematical framework that examines the size of libraries required to adequately sample the spaces corresponding to some commonly used property sets. Introduction of conformational flexibility is also discussed as a means of increasing coverage of chemical libraries, while at the same time considering the thermodynamic consequences of flexibility upon detectable activity. Our theoretical analysis reveals that the property spaces currently in use are extremely large and unlikely to provide adequate discrimination among compounds.
基于不同属性集的分子不同表示形式,可以产生关于库设计中所涉及问题的不同观点。特别是,不同的化学表示形式可能会对所需库的大小产生非常不同的估计。我们提供了一个初步的数学框架,用于研究为充分采样与一些常用属性集相对应的空间所需的库的大小。还讨论了引入构象灵活性作为增加化学库覆盖范围的一种方法,同时考虑灵活性对可检测活性的热力学影响。我们的理论分析表明,目前使用的属性空间非常大,不太可能在化合物之间提供充分的区分。