Giordanetto Fabrizio, Jin Chentian, Willmore Lindsay, Feher Miklos, Shaw David E
D. E. Shaw Research , New York , New York 10036 , United States.
Department of Biochemistry and Molecular Biophysics , Columbia University , New York , New York 10032 , United States.
J Med Chem. 2019 Apr 11;62(7):3381-3394. doi: 10.1021/acs.jmedchem.8b01855. Epub 2019 Apr 1.
A "fragment hit", a molecule of low molecular weight that has been validated to bind to a target protein, can be an effective chemical starting point for a drug discovery project. Our ability to find and progress fragment hits could potentially be improved by enhancing our understanding of their binding properties, which to date has largely been based on tacit knowledge and reports from individual projects. In the work reported here, we systematically analyzed the molecular and binding properties of fragment hits using 489 published protein-fragment complexes. We identified a number of notable features that these hits tend to have in common, including preferences in buried surface area upon binding, hydrogen bonding and other directional interactions with the protein targets, structural topology, functional-group occurrence, and degree of carbon saturation. In the future, taking account of these preferences in designing and selecting fragments to screen against protein targets may increase the chances of success in fragment screening campaigns.
“片段命中物”是一种经证实能与目标蛋白结合的低分子量分子,它可以成为药物研发项目的有效化学起始点。通过增进对其结合特性的理解,我们发现和推进片段命中物的能力可能会得到提升,而迄今为止,这在很大程度上是基于隐性知识和各个项目的报告。在本文所报道的工作中,我们使用489个已发表的蛋白质 - 片段复合物系统地分析了片段命中物的分子和结合特性。我们确定了这些命中物往往具有的一些显著特征,包括结合时在埋藏表面积方面的偏好、与蛋白质靶点的氢键和其他定向相互作用、结构拓扑、官能团出现情况以及碳饱和度。未来,在设计和选择用于筛选蛋白质靶点的片段时考虑这些偏好,可能会增加片段筛选活动成功的机会。