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药物发现中的分子变色龙。

Molecular chameleons in drug discovery.

机构信息

Department of Chemistry - BMC, Uppsala University, Uppsala, Sweden.

出版信息

Nat Rev Chem. 2024 Jan;8(1):45-60. doi: 10.1038/s41570-023-00563-1. Epub 2023 Dec 20.

Abstract

Molecular chameleons possess a flexibility that allows them to dynamically shield or expose polar functionalities in response to the properties of the environment. Although the concept of molecular chameleons was introduced already in 1970, interest in them has grown considerably since the 2010s, when drug discovery has focused to an increased extent on new chemical modalities. Such modalities include cyclic peptides, macrocycles and proteolysis-targeting chimeras, all of which reside in a chemical space far from that of traditional small-molecule drugs. Both cell permeability and aqueous solubility are required for the oral absorption of drugs. Engineering these properties, and potent target binding, into the larger new modalities is a more daunting task than for traditional small-molecule drugs. The ability of chameleons to adapt to different environments may be essential for success. In this Review, we provide both general and theoretical insights into the realm of molecular chameleons. We discuss why chameleons have come into fashion and provide a do-it-yourself toolbox for their design; we then provide a glimpse of how advanced in silico methods can support molecular chameleon design.

摘要

分子变色龙具有一种灵活性,使它们能够根据环境的性质动态地屏蔽或暴露极性官能团。尽管分子变色龙的概念早在 1970 年就已经提出,但自 21 世纪 10 年代以来,人们对它们的兴趣大大增加,当时药物发现越来越关注新的化学模式。这些模式包括环肽、大环和蛋白水解靶向嵌合体,它们都存在于远离传统小分子药物的化学空间中。药物的口服吸收需要细胞通透性和水溶解度。将这些特性和强大的靶标结合到更大的新模式中,比传统小分子药物更具挑战性。变色龙适应不同环境的能力对于成功可能至关重要。在这篇综述中,我们提供了分子变色龙领域的一般和理论见解。我们讨论了变色龙为何流行,并为其设计提供了一个 DIY 工具包;然后我们还介绍了先进的计算方法如何支持分子变色龙的设计。

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