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在基于Fmoc/t-Bu的固相肽合成过程中抑制内硫酰胺肽的差向异构化。

Suppressing the epimerization of endothioamide peptides during Fmoc/t-Bu-based solid phase peptide synthesis.

作者信息

Mukherjee Somnath, Chatterjee Jayanta

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore, 560012, India.

NMR Research Centre, Indian Institute of Science, Bangalore, 560012, India.

出版信息

J Pept Sci. 2016 Nov;22(11-12):664-672. doi: 10.1002/psc.2929. Epub 2016 Oct 20.

Abstract

Despite a number of intriguing utilities associated with thioamide-containing peptides and proteins in the context of biophysics, pharmacology and chemical biology, it has hitherto remained as one of the underexplored territories of peptidomimetics. The synthesis of long mono to multiply substituted endothioamide peptides is invariably accompanied with severe epimerization, oxoamide formation and various other undesired side reactions, resulting in messy product profiles. This has completely restrained their use as novel chemical tools for biological studies. During the chain elongation of an N-terminally located thioamide peptide using the Fmoc/t-Bu chemistry, it becomes vulnerable to the repetitive basic treatments as required for such chemistry. The incompatibility of thioamide moiety with bases as well as strong coupling reagents leads to epimerization as well as other side reactions due to its nucleophilicity, resulting in the loss of the stereochemical identity of the thioamidated amino acid residue. An easy-to-implement and efficient protocol to synthesize long (>10-mer) endothioamide peptides, significantly suppressing epimerization and other side reactions using 10% piperidine/dimethylformamide for 1 min, is reported herein. The novelty of the protocol is shown through the efficient synthesis of a number of 10-12-mer mono to multiply thioamide-substituted peptides with broad substrate scopes. The utility of the protocol in the context of protein engineering and chemical protein synthesis is also shown through the synthesis of a thioamide version of the 16-mer peptide from the B1 domain of protein G. Such a protocol to synthesize long endothioamide peptides would open up avenues toward engineering and accessing novel thiopeptide and thioprotein-based chemical tools, the synthesis of which had been a serious hurdle thus far. Copyright © 2016 European Peptide Society and John Wiley & Sons, Ltd.

摘要

尽管含硫代酰胺的肽和蛋白质在生物物理学、药理学和化学生物学领域有许多有趣的应用,但迄今为止,它仍是肽模拟物中未被充分探索的领域之一。长链单取代至多取代的内硫代酰胺肽的合成总是伴随着严重的差向异构化、氧代酰胺形成和各种其他不期望的副反应,导致产物谱混乱。这完全限制了它们作为生物学研究新型化学工具的使用。在使用Fmoc/t-Bu化学方法对N端硫代酰胺肽进行链延长时,它容易受到该化学方法所需的重复碱性处理的影响。硫代酰胺部分与碱以及强偶联试剂的不相容性,由于其亲核性导致差向异构化以及其他副反应,从而导致硫代酰胺化氨基酸残基的立体化学特性丧失。本文报道了一种易于实施且高效的方案,用于合成长链(>10肽)内硫代酰胺肽,使用10%哌啶/二甲基甲酰胺处理1分钟可显著抑制差向异构化和其他副反应。通过高效合成多种具有广泛底物范围的10 - 12肽单取代至多取代硫代酰胺肽,展示了该方案的新颖性。通过合成来自蛋白G B1结构域的16肽的硫代酰胺版本,也展示了该方案在蛋白质工程和化学蛋白质合成方面的实用性。这样一种合成长链内硫代酰胺肽的方案将为工程化和获取新型硫肽和硫蛋白基化学工具开辟道路,而迄今为止其合成一直是一个严重的障碍。版权所有© 2016欧洲肽学会和约翰威立父子有限公司。

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