Non-symmetric stapling of native peptides

IF 38.1 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Nature reviews. Chemistry Pub Date : 2024-04-04 DOI:10.1038/s41570-024-00591-5
Fa-Jie Chen, Wanzhen Lin, Fen-Er Chen
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Abstract

Stapling has emerged as a powerful technique in peptide chemistry. It enables precise control over peptide conformation leading to enhanced properties such as improved stability and enhanced binding affinity. Although symmetric stapling methods have been extensively explored, the field of non-symmetric stapling of native peptides has received less attention, largely as a result of the formidable challenges it poses — in particular the complexities involved in achieving the high chemo-selectivity and site-selectivity required to simultaneously modify distinct proteinogenic residues. Over the past 5 years, there have been significant breakthroughs in addressing these challenges. In this Review, we describe the latest strategies for non-symmetric stapling of native peptides, elucidating the protocols, reaction mechanisms and underlying design principles. We also discuss current challenges and opportunities this field offers for future applications, such as ligand discovery and peptide-based therapeutics. Peptide stapling is a powerful technique used to lock peptide conformations and modulate peptide functions. This Review highlights the newest development in non-symmetric stapling of native peptides bearing natural amino acids, elucidating current advances, challenges and future opportunities.

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原生肽的非对称装订
钉合技术已成为多肽化学领域的一项强大技术。它可以精确控制肽的构象,从而提高稳定性和增强结合亲和力等特性。尽管对称钉合方法已得到广泛探索,但原生肽的非对称钉合领域受到的关注却较少,这主要是由于非对称钉合面临着巨大挑战--特别是在实现高化学选择性和位点选择性以同时修饰不同的蛋白源残基时所涉及的复杂性。过去 5 年中,在应对这些挑战方面取得了重大突破。在本综述中,我们介绍了对原生肽进行非对称钉合的最新策略,阐明了协议、反应机制和基本设计原则。我们还讨论了这一领域目前面临的挑战和未来应用的机遇,如配体发现和基于肽的疗法。
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来源期刊
Nature reviews. Chemistry
Nature reviews. Chemistry Chemical Engineering-General Chemical Engineering
CiteScore
52.80
自引率
0.80%
发文量
88
期刊介绍: Nature Reviews Chemistry is an online-only journal that publishes Reviews, Perspectives, and Comments on various disciplines within chemistry. The Reviews aim to offer balanced and objective analyses of selected topics, providing clear descriptions of relevant scientific literature. The content is designed to be accessible to recent graduates in any chemistry-related discipline while also offering insights for principal investigators and industry-based research scientists. Additionally, Reviews should provide the authors' perspectives on future directions and opinions regarding the major challenges faced by researchers in the field.
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