Nikita Ostrovitsa, Conor Williams, Konstantin Raabe, Joshua T McLean, Markus Muttenthaler, Eoin M Scanlan
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引用次数: 0
摘要
巯基独特的亲核性和氧化还原性使其成为肽结构多样化的合成手柄,包括大环化,连接和生物偶联。在此,我们展示了一种顺序酰基-巯基/ s -去乙酰化方案,用于选择性地将巯基残基安装到树脂上的生物活性肽上。通过适当地放置不饱和残基,氢硫基化/ s -去乙酰化方案为研究具有不同环大小的含二硫肽的结构-活性关系提供了一种新的合成工具。此外,还引入了一种新的、普遍适用的荧光标记策略,以方便直接在树脂上偶联,而无需中间纯化步骤。这些新方法为多肽大环化和生物偶联提供了一个强大而通用的平台,在多肽合成和化学生物学中具有广泛的应用前景。
An Efficient Thiol-ene Mediated Protocol for Thiolated Peptide Synthesis and On-Resin Diversification.
The unique nucleophilic and redox properties of the sulfhydryl group render it highly useful as a synthetic handle for the diversification of peptide structure, including macrocyclization, ligation, and bioconjugation. Herein, a sequential acyl-thiol-ene/S-deacetylation protocol for selectively installing thiol residues onto bioactive peptides on-resin is demonstrated. Through judicious placement of appropriate unsaturated residues, the hydrothiolation/S-deacetylation protocol offers a novel synthetic strategy to investigate the structure-activity relationship of disulfide-containing peptides displaying different ring sizes. Furthermore, a new and generally applicable fluorescent labeling strategy is introduced to facilitate direct on-resin conjugation without intermediate purification steps. These new methods provide a robust and versatile platform for peptide macrocyclization and bioconjugation, with broad applications in peptide synthesis and chemical biology.
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