变构调节
吲哚试验
药物发现
功能(生物学)
化学
计算生物学
变构调节剂
小分子
药品
药理学
生物
生物化学
受体
细胞生物学
作者
Meng-Lan Luo,Qian Zhao,Xiang‐Hong He,Xin Xie,Hongping Zhu,Feng‐Ming You,Cheng Peng,Gu Zhan,Wei Huang
标识
DOI:10.1016/j.biopha.2023.114574
摘要
Allosteric modulation is a direct and effective method for regulating the function of biological macromolecules, which play vital roles in various cellular activities. Unlike orthosteric modulators, allosteric modulators bind to sites distant from the protein's orthosteric/active site and can have specific effects on the protein's function or activity without competing with endogenous ligands. Compared to traditional orthosteric modulators, allosteric modulators offer several advantages, including reduced side effects, greater specificity, and lower toxicity, making them a promising strategy for developing novel drugs. Indole-fused architectures are widely distributed in natural products and bioactive drug leads, displaying diverse biological activities that attract the interest of both chemists and biologists in drug discovery. Currently, an increasing number of indole-fused compounds have exhibited potent activities in allosteric modulation. In this review, we provide a brief summary of examples of allosteric modulators based on the indole-fused complex architecture, highlighting the strategies for drug design/discovery and the structure-activity relationships of allosteric modulators from the perspective of medicinal chemistry.
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