Lugovskoy Alexey A, Degterev Alexei I, Fahmy Amr F, Zhou Pei, Gross John D, Yuan Junying, Wagner Gerhard
Committee on Higher Degrees in Biophysics, Harvard University, Cambridge, Massachusetts 02138, USA.
J Am Chem Soc. 2002 Feb 20;124(7):1234-40. doi: 10.1021/ja011239y.
The increasing diversity of small molecule libraries has been an important source for the development of new drugs and, more recently, for unraveling the mechanisms of cellular events-a process termed chemical genetics.(1) Unfortunately, the majority of currently available compounds are mechanism-based enzyme inhibitors, whereas most of cellular activity regulation proceeds on the level of protein-protein interactions. Hence, the development of small molecule inhibitors of protein-protein interactions is important. When screening compound libraries, low-micromolar inhibitors of protein interactions can be routinely found. The enhancement of affinities and rationalization of the binding mechanism require structural information about the protein-ligand complexes. Crystallization of low-affinity complexes is difficult, and their NMR analysis suffers from exchange broadening, which limits the number of obtainable intermolecular constraints. Here we present a novel method of ligand validation and optimization, which is based on the combination of structural and computational approaches. We successfully used this method to analyze the basis for structure-activity relationships of previously selected (2) small molecule inhibitors of the antiapoptotic protein Bcl-xL and identified new members of this inhibitor family.
小分子文库日益增加的多样性一直是新药开发的重要来源,最近也成为揭示细胞事件机制(这一过程称为化学遗传学)的重要来源。(1)不幸的是,目前可用的大多数化合物都是基于机制的酶抑制剂,而大多数细胞活性调节是在蛋白质-蛋白质相互作用水平上进行的。因此,开发蛋白质-蛋白质相互作用的小分子抑制剂很重要。在筛选化合物文库时,可以常规地找到低微摩尔浓度的蛋白质相互作用抑制剂。亲和力的提高和结合机制的合理化需要蛋白质-配体复合物的结构信息。低亲和力复合物的结晶困难,其核磁共振分析受到交换展宽的影响,这限制了可获得的分子间约束的数量。在这里,我们提出了一种基于结构和计算方法相结合的新型配体验证和优化方法。我们成功地使用这种方法分析了先前选择的(2)抗凋亡蛋白Bcl-xL小分子抑制剂的构效关系基础,并鉴定了该抑制剂家族的新成员。