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直接从固相载体上对未保护的肽进行化学连接。

Chemical ligation of unprotected peptides directly from a solid support.

作者信息

Camarero J A, Cotton G J, Adeva A, Muir T W

机构信息

Laboratory of Synthetic Protein Chemistry, The Rockefeller University, New York, New York 10021, USA.

出版信息

J Pept Res. 1998 Apr;51(4):303-16. doi: 10.1111/j.1399-3011.1998.tb00428.x.

Abstract

In this article we describe a new, convenient procedure to carry out intramolecular (cyclization) and intermolecular native chemical ligations of unprotected peptides directly from a solid support. Our solid-phase ligation approach eliminates the need to manipulate peptide (alpha)thioacid and peptide (alpha)thioester intermediates in aqueous solution before the ligation step, thereby leading to a reduction in handling losses and significantly increasing the overall efficiency of the chemical ligation strategy. A key step in our ligation scheme is the ability to generate fully unprotected peptides tethered to a solid support through an (alpha)thioester linkage. This can be achieved efficiently using optimized Boc-solid-phase peptide synthesis on a 3-mercaptopropionamide-polyethylene glycol-poly-(N,N-dimethylacrylamide) copolymer support (HS-PEGA). Once the synthesis is complete, the fully protected peptide (alpha)thioester resin is treated with HF to give the corresponding fully unprotected peptide (alpha)thioester resin. Using this procedure several polypeptides ranging from 15 to 47 residues were synthesized successfully. These peptide-resins were then used to perform both intramolecular (head-to-tail cyclizations) and intermolecular solid-phase ligations. The intramolecular solid-phase ligations proceeded much faster than their intermolecular counterparts, but in both cases the reactions were observed to be remarkably clean. The presence of aromatic thiol cofactors significantly accelerated the relatively slow intermolecular ligations. This novel methodology was then extended to provide a general method for performing sequential intermolecular ligations, allowing easy access to much larger polypeptide and protein systems.

摘要

在本文中,我们描述了一种新的便捷方法,可直接在固相载体上进行未保护肽的分子内(环化)和分子间天然化学连接。我们的固相连接方法无需在连接步骤之前在水溶液中处理肽α硫代酸和肽α硫酯中间体,从而减少了操作损失并显著提高了化学连接策略的整体效率。我们连接方案中的关键步骤是能够生成通过α硫酯键连接到固相载体上的完全未保护的肽。使用在3-巯基丙酰胺-聚乙二醇-聚(N,N-二甲基丙烯酰胺)共聚物载体(HS-PEGA)上优化的Boc-固相肽合成可以有效地实现这一点。合成完成后,用HF处理完全保护的肽α硫酯树脂,得到相应的完全未保护的肽α硫酯树脂。使用该方法成功合成了几种长度在15至47个残基之间的多肽。然后使用这些肽树脂进行分子内(头对尾环化)和分子间固相连接。分子内固相连接比分子间连接进行得快得多,但在两种情况下,反应都非常干净。芳香族硫醇辅因子的存在显著加速了相对较慢的分子间连接。然后将这种新方法扩展,以提供一种进行连续分子间连接的通用方法,从而能够轻松获得更大的多肽和蛋白质体系。

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