Güner Osman F
Accelrys Inc, 9685 Scranton Road, San Diego, CA 92121, USA.
Curr Top Med Chem. 2002 Dec;2(12):1321-32. doi: 10.2174/1568026023392940.
With computer-aided drug design established as an integral part of the lead discovery and optimization process, pharmacophores have become a focal point for conceptualizing and understanding receptor-ligand interactions. In the structure-based design process, pharmacophores can be used to align molecules based on the three-dimensional arrangement of chemical features or to develop predictive models (e.g., 3D-QSAR) that correlate with the experimental activities of a given training set. Pharmacophores can be also used as search queries for retrieving potential leads from structural databases, for designing molecules with specific desired attributes, or as fingerprints for assessing similarity and diversity of molecules. This review article presents a historical perspective on the evolution and use of the pharmacophore concept in the pharmaceutical, biotechnology, and fragrances industry with published examples of how the technology has contributed and advanced the field.
随着计算机辅助药物设计已成为先导化合物发现和优化过程中不可或缺的一部分,药效基团已成为概念化和理解受体-配体相互作用的焦点。在基于结构的设计过程中,药效基团可用于根据化学特征的三维排列来对齐分子,或开发与给定训练集的实验活性相关的预测模型(例如3D-QSAR)。药效基团还可用作搜索查询,从结构数据库中检索潜在的先导化合物,设计具有特定所需属性的分子,或用作评估分子相似性和多样性的指纹。本文综述介绍了药效基团概念在制药、生物技术和香料行业的演变和应用的历史观点,并列举了该技术如何推动该领域发展的已发表实例。