Guangdong Provincial Engineering Laboratory of Biomass High Value Utilization, Institute of Biological and Medical Engineering, Guangdong Academy of Sciences, Guangzhou 510316, China.
Experimental Drug Development Centre (EDDC), Agency for Science, Technology and Research (A*STAR), 10 Biopolis Road, Chromos, #05-01, Singapore 138670, Singapore.
Curr Top Med Chem. 2021;21(13):1099-1112. doi: 10.2174/1568026621666210804115700.
Fragment-Based Drug Discovery (FBDD) is a strategy to develop potent lead molecules and is frequently used in drug discovery projects of the pharmaceutical industry. This method starts from identifying a small-molecule fragment, which usually binds weakly to the target and follows with a hit-to-lead step in which the fragment is grown into potent molecules that bind tightly to the target to affect its function. Quite a few drugs and compounds in clinical trials are developed using this approach, making FBDD a powerful strategy in drug discovery. FBDD can be applied to multiple targets and the hit rate in screening can be used in target druggability assessment. In this minireview, we provide a summary of the development of FBDD. In addition to giving a brief summary of the methods used in fragment screening, we highlight some methods that are critical in fragment growth. Biophysical methods and careful chemical modification of the fragments are the key elements in FBDD. We show several strategies that can be utilized in FBDD. We emphasize that NMR spectroscopy such as F-NMR and H-N-HSQC experiment and X-ray crystallography are important in FBDD due to their roles in fragment screening and understanding the binding modes of the fragment hits, which provides a strategy for fragment growth.
基于片段的药物发现(FBDD)是开发有效先导化合物的一种策略,常用于制药行业的药物发现项目中。该方法从识别小分子片段开始,这些片段通常与靶标结合较弱,然后进行从命中到先导的步骤,在此过程中,将片段生长为与靶标紧密结合的有效分子,从而影响其功能。相当多的临床试验中的药物和化合物都是通过这种方法开发的,这使得 FBDD 成为药物发现中的一种强大策略。FBDD 可以应用于多个靶点,筛选中的命中率可用于评估靶点的可成药性。在这篇综述中,我们提供了 FBDD 发展的概述。除了简要总结片段筛选中使用的方法外,我们还强调了片段生长中一些关键的方法。生物物理方法和对片段的仔细化学修饰是 FBDD 的关键要素。我们展示了可用于 FBDD 的几种策略。我们强调 NMR 光谱学(如 F-NMR 和 H-N-HSQC 实验)和 X 射线晶体学在 FBDD 中的重要性,因为它们在片段筛选和理解片段命中的结合模式中发挥作用,为片段生长提供了一种策略。