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阿斯巴甜酰亚胺问题依然存在:由于形成 N 端哌嗪-2,5-二酮,芴甲氧羰基-固相肽合成(Fmoc-SPPS)的链终止。

The aspartimide problem persists: Fluorenylmethyloxycarbonyl-solid-phase peptide synthesis (Fmoc-SPPS) chain termination due to formation of N-terminal piperazine-2,5-diones.

机构信息

Bachem AG, Hauptstrasse 144, CH-4416, Bubendorf, Switzerland.

Swiss Federal Laboratories for Materials Science and Technology (EMPA), Laboratory for Functional Polymers, Überlandstrasse 129, CH-8600, Dübendorf, Switzerland.

出版信息

J Pept Sci. 2019 Jul;25(7):e3193. doi: 10.1002/psc.3193.

Abstract

Aspartimide (Asi) formation is a notorious side reaction in peptide synthesis that is well characterized and described in literature. In this context, we observed significant amounts of chain termination in Fmoc-SPPS while synthesizing the N-terminal Xaa-Asp-Yaa motif. This termination was caused by the formation of piperazine-2,5-diones. We investigated this side reaction using a linear model peptide and independently synthesizing its piperazine-2,5-dione derivative. Nuclear magnetic resonance (NMR) data of the side product present in the crude linear peptide proves that exclusively the six-membered ring is formed whereas the theoretically conceivable seven-membered 1,4-diazepine-2,5-dione is not found. We propose a mechanism where nucleophilic attack of the N-terminal amino function takes place at the α-carbon of the carbonyl group of the corresponding Asi intermediate. In addition, we systematically investigated the impact of (a) different adjacent amino acid residues, (b) backbone protection, and (c) side chain protection of flanking amino acids. The side reaction is directly related to the Asi intermediate. Hence, hindering or avoiding Asi formation reduces or completely suppresses this side reaction.

摘要

天冬亚酰胺(Asi)的形成是肽合成中一种臭名昭著的副反应,在文献中有很好的描述和描述。在这方面,我们在合成 N 端 Xaa-Asp-Yaa 基序时,在 Fmoc-SPPS 中观察到大量的链终止。这种终止是由哌嗪-2,5-二酮的形成引起的。我们使用线性模型肽和独立合成其哌嗪-2,5-二酮衍生物来研究这种副反应。粗线性肽中存在的副产物的核磁共振(NMR)数据证明仅形成六元环,而理论上可想象的七元 1,4-二氮杂环庚烷-2,5-二酮不存在。我们提出了一种机制,其中 N 末端氨基官能团在相应 Asi 中间体的羰基的α-碳上发生亲核攻击。此外,我们系统地研究了(a)不同相邻氨基酸残基、(b)骨架保护和(c)侧翼氨基酸侧链保护的影响。该副反应与 Asi 中间体直接相关。因此,阻碍或避免 Asi 的形成会减少或完全抑制这种副反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14dc/6772008/054ff645bba7/PSC-25-na-g001.jpg

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