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采用双功能策略设计药物和化学探针。

Designing drugs and chemical probes with the dualsteric approach.

机构信息

College of Pharmacy, Ningxia Medical University, Yinchuan, Ningxia Hui Autonomous Region, China.

State Key Laboratory of Medical Genomics, National Research Center for Translational Medicine at Shanghai, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

出版信息

Chem Soc Rev. 2023 Dec 11;52(24):8651-8677. doi: 10.1039/d3cs00650f.

Abstract

Traditionally, drugs are monovalent, targeting only one site on the protein surface. This includes orthosteric and allosteric drugs, which bind the protein at orthosteric and allosteric sites, respectively. Orthosteric drugs are good in potency, whereas allosteric drugs have better selectivity and are solutions to classically undruggable targets. However, it would be difficult to simultaneously reach high potency and selectivity when targeting only one site. Also, both kinds of monovalent drugs suffer from mutation-caused drug resistance. To overcome these obstacles, dualsteric modulators have been proposed in the past twenty years. Compared to orthosteric or allosteric drugs, dualsteric modulators are bivalent (or bitopic) with two pharmacophores. Each of the two pharmacophores bind the protein at the orthosteric and an allosteric site, which could bring the modulator with special properties beyond monovalent drugs. In this study, we comprehensively review the current development of dualsteric modulators. Our main effort reason and illustrate the aims to apply the dualsteric approach, including a "double win" of potency and selectivity, overcoming mutation-caused drug resistance, developments of function-biased modulators, and design of partial agonists. Moreover, the strengths of the dualsteric technique also led to its application outside pharmacy, including the design of highly sensitive fluorescent tracers and usage as molecular rulers. Besides, we also introduced drug targets, designing strategies, and validation methods of dualsteric modulators. Finally, we detail the conclusions and perspectives.

摘要

传统上,药物是单价的,仅靶向蛋白质表面上的一个位点。这包括正位和变构药物,它们分别结合在正位和变构位点上。正位药物的效力好,而变构药物的选择性更好,是针对经典上不可成药的靶标的解决方案。然而,仅靶向一个位点时,同时达到高效力和选择性将很困难。此外,这两种单价药物都容易受到突变引起的药物耐药性的影响。为了克服这些障碍,双价调节剂在过去二十年中被提出。与正位或变构药物相比,双价调节剂是双价(或双位点)的,具有两个药效团。两个药效团中的每一个都结合在正位和变构位点上,这可以使调节剂具有超越单价药物的特殊性质。在这项研究中,我们全面回顾了双价调节剂的当前发展。我们的主要努力是阐明应用双价方法的目的,包括效力和选择性的“双赢”、克服突变引起的药物耐药性、功能偏向调节剂的发展以及部分激动剂的设计。此外,双价技术的优势还使其在药物以外的领域得到应用,包括高灵敏度荧光示踪剂的设计和分子标尺的应用。此外,我们还介绍了双价调节剂的药物靶点、设计策略和验证方法。最后,我们详细介绍了结论和展望。

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