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环状肽类药物作为细胞内靶点的药物:肽类治疗药物开发的下一个前沿。

Cyclic Peptides as Drugs for Intracellular Targets: The Next Frontier in Peptide Therapeutic Development.

机构信息

Department of Chemistry, University of New South Wales, Sydney, Gate 2 High Street, SEB 701, Kensington, NSW, 2052, Australia.

出版信息

Chemistry. 2021 Jan 21;27(5):1487-1513. doi: 10.1002/chem.201905385. Epub 2020 Nov 9.

Abstract

Developing macrocyclic peptides that can reach intracellular targets is a significant challenge. This review discusses the most recent strategies used to develop cell permeable cyclic peptides that maintain binding to their biological target inside the cell. Macrocyclic peptides are unique from small molecules because traditional calculated physical properties are unsuccessful for predicting cell membrane permeability. Peptide synthesis and experimental membrane permeability is the only strategy that effectively differentiates between cell permeable and cell impermeable molecules. Discussed are chemical strategies, including backbone N-methylation and stereochemical changes, which have produced molecular scaffolds with improved cell permeability. However, these improvements often come at the expense of biological activity as chemical modifications alter the peptide conformation, frequently impacting the compound's ability to bind to the target. Highlighted is the most promising approach, which involves side-chain alterations that improve cell permeability without impact binding events.

摘要

开发能够到达细胞内靶标的大环肽是一项重大挑战。本综述讨论了最近用于开发细胞通透性环肽的策略,这些环肽在细胞内保持与生物靶标的结合。大环肽与小分子不同,因为传统的计算物理性质不能成功预测细胞膜通透性。肽合成和实验膜通透性是有效区分细胞通透性和细胞非通透性分子的唯一策略。讨论了包括主链 N-甲基化和立体化学变化在内的化学策略,这些策略产生了具有改善细胞通透性的分子支架。然而,这些改进往往是以牺牲生物活性为代价的,因为化学修饰改变了肽的构象,常常影响化合物与靶标的结合能力。重点介绍了最有前途的方法,即通过改变侧链来提高细胞通透性,而不影响结合事件。

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