Northern Institute for Cancer Research, Medical School , Newcastle University , Paul O'Gorman Building, Framlington Place , Newcastle upon Tyne NE2 4HH , U.K.
Northern Institute for Cancer Research, Chemistry, School of Natural and Environmental Sciences , Newcastle University , Bedson Building , Newcastle upon Tyne NE1 7RU , U.K.
J Med Chem. 2019 Apr 11;62(7):3741-3752. doi: 10.1021/acs.jmedchem.9b00304. Epub 2019 Mar 26.
Identifying ligand binding sites on proteins is a critical step in target-based drug discovery. Current approaches to this require resource-intensive screening of large libraries of lead-like or fragment molecules. Here, we describe an efficient and effective experimental approach to mapping interaction sites using a set of halogenated compounds expressing paired hydrogen-bonding motifs, termed FragLites. The FragLites identify productive drug-like interactions, which are identified sensitively and unambiguously by X-ray crystallography, exploiting the anomalous scattering of the halogen substituent. This mapping of protein interaction surfaces provides an assessment of druggability and can identify efficient start points for the de novo design of hit molecules incorporating the interacting motifs. The approach is illustrated by mapping cyclin-dependent kinase 2, which successfully identifies orthosteric and allosteric sites. The hits were rapidly elaborated to develop efficient lead-like molecules. Hence, the approach provides a new method of identifying ligand sites, assessing tractability and discovering new leads.
鉴定蛋白质上的配体结合位点是基于靶标的药物发现的关键步骤。目前,针对这一目标的方法需要对大量类似先导或片段分子的文库进行资源密集型筛选。在这里,我们描述了一种使用一组表达成对氢键模体的卤代化合物(称为 FragLites)来绘制相互作用位点的高效、有效的实验方法。FragLites 可以识别有生产力的药物样相互作用,这些相互作用通过 X 射线晶体学敏感且明确地被识别,利用卤素取代基的异常散射。这种蛋白质相互作用表面的映射提供了对可成药性的评估,并可以确定包含相互作用模体的命中分子的从头设计的有效起点。该方法通过对细胞周期蛋白依赖性激酶 2 的映射进行说明,成功地鉴定了正位和变构结合位点。这些命中分子被迅速阐述以开发高效的类似先导分子。因此,该方法提供了一种识别配体结合位点、评估可及性和发现新先导化合物的新方法。