Chen Jinhua, Zhang Ziming, Stebbins John L, Zhang Xiyun, Hoffman Randy, Moore Ambika, Pellecchia Maurizio
Burnham Institute for Medical Research, 10901 North Pines Road, La Jolla, California 92037, USA.
ACS Chem Biol. 2007 May 22;2(5):329-36. doi: 10.1021/cb700025j. Epub 2007 Apr 27.
In this study, we describe a novel approach for lead discovery against protein kinases, pharmacophore by interligand nuclear Overhauser effect (ILOE), in which a pair of ligands that bind to adjacent pockets on the target surface is identified by the detection of protein-mediated ILOEs. We demonstrate that a pharmacophore-based search guided by experimental binding data of weakly interacting fragments can be rapidly and efficiently used to identify (or synthesize) high-affinity, selective ligands. Targeting the inactive state of protein kinases represents a promising approach to achieve selectivity and cellular efficacy. In this respect, when we apply the method for the discovery of potent p38alpha inhibitors, we also demonstrate that the resulting bidentate compounds are highly selective and exhibit a cellular activity that parallels their in vitro binding to the inactive form of the kinase. The method is relatively simple and of general applicability, and as such we anticipate its potential implementation against a variety of macromolecular targets, including not only protein kinases but also those involved in protein-protein interactions or even nucleic acids.
在本研究中,我们描述了一种针对蛋白激酶进行先导化合物发现的新方法,即通过配体间核Overhauser效应(ILOE)构建药效团,其中通过检测蛋白质介导的ILOE来识别一对结合在靶标表面相邻口袋上的配体。我们证明,由弱相互作用片段的实验结合数据引导的基于药效团的搜索可快速有效地用于识别(或合成)高亲和力、选择性的配体。靶向蛋白激酶的非活性状态是实现选择性和细胞活性的一种有前景的方法。在这方面,当我们将该方法应用于发现强效p38α抑制剂时,我们还证明所得的双齿化合物具有高度选择性,并表现出与其体外与激酶非活性形式结合情况相当的细胞活性。该方法相对简单且具有普遍适用性,因此我们预计它可潜在地应用于多种大分子靶标,不仅包括蛋白激酶,还包括参与蛋白质 - 蛋白质相互作用甚至核酸的靶标。