Aldeghi Matteo, Malhotra Shipra, Selwood David L, Chan Ah Wing Edith
Wolfson Institute for Biomedical Research, University College London, Gower Street, London, WC1E 6BT, UK.
Chem Biol Drug Des. 2014 Apr;83(4):450-61. doi: 10.1111/cbdd.12260.
Using small, flat aromatic rings as components of fragments or molecules is a common practice in fragment-based drug discovery and lead optimization. With an increasing focus on the exploration of novel biological and chemical space, and their improved synthetic accessibility, 3D fragments are attracting increasing interest. This study presents a detailed analysis of 3D and 2D ring fragments in marketed drugs. Several measures of properties were used, such as the type of ring assemblies and molecular shapes. The study also took into account the relationship between protein classes targeted by each ring fragment, providing target-specific information. The analysis shows the high structural and shape diversity of 3D ring systems and their importance in bioactive compounds. Major differences in 2D and 3D fragments are apparent in ligands that bind to the major drug targets such as GPCRs, ion channels, and enzymes.
在基于片段的药物发现和先导化合物优化中,使用小的平面芳香环作为片段或分子的组成部分是一种常见做法。随着对新型生物和化学空间探索的日益关注,以及其合成可及性的提高,三维片段正吸引着越来越多的关注。本研究对市售药物中的三维和二维环状片段进行了详细分析。使用了几种性质度量方法,如环组装类型和分子形状。该研究还考虑了每个环状片段所靶向的蛋白质类别之间的关系,提供了靶点特异性信息。分析表明三维环系统具有高度的结构和形状多样性及其在生物活性化合物中的重要性。二维和三维片段的主要差异在与主要药物靶点(如GPCR、离子通道和酶)结合的配体中很明显。