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在水中通过硫丙氨酰键和半胱氨酰键对未保护的肽进行串联连接。

Tandem ligation of unprotected peptides through thiaprolyl and cysteinyl bonds in water.

作者信息

Tam J P, Yu Q, Yang J L

机构信息

Department of Microbiology and Immunology, Vanderbilt University, A5119 MCN, Nashville, Tennessee 37232-2363, USA.

出版信息

J Am Chem Soc. 2001 Mar 21;123(11):2487-94. doi: 10.1021/ja0035654.

Abstract

Tandem ligation for the synthesis and modification of proteins entails forming two or more regiospecific amide bonds of multiple free peptide segments without a protecting-group scheme. We here describe a semi-orthogonal strategy for ligating three unprotected peptide segments, two of which contain N-terminal (NT) cysteine, to form in tandem two amide bonds, an Xaa-SPro (thiaproline), and then an Xaa-Cys. This strategy exploits the strong preference of an NT-cysteinyl peptide under acidic conditions to undergo selectively an SPro-imine ligation rather than a Cys-thioester ligation. Operationally, it was performed in the N --> C direction, first by an imine ligation at pH < 3 to afford an Xaa-thiazolidine ester bond between a peptide containing a carboxyl terminal (CT)-glycoaldehyde ester and a second peptide containing both an NT-Cys and a CT-thioester. The newly created O-ester-linked segment with a CT-thioester was then ligated to another NT-cysteinyl peptide through thioester ligation at pH > 7 to form an Xaa-Cys bond. Concurrently, this basic condition also catalyzed the O,N-acyl migration of an Xaa-thiazolidine ester to the Xaa-SPro bond at the first ligation site to complete the tandem three-segment ligation. Both ligation reactions were performed in aqueous buffered solvents. The effectiveness of this three-segment ligation strategy was tested in six peptides ranging from 19 to 70 amino acids, including thiaproline --> proline analogues of somatostatins and two CC-chemokines. The thiaproline replacements in these peptides and proteins did not result in altered biological activity. By eliminating the protecting-group scheme and coupling reagents, tandem ligation of multiple free peptide segments in aqueous solutions enhances the scope of protein synthesis and may provide a useful approach for combinatorial segment synthesis.

摘要

用于蛋白质合成和修饰的串联连接需要在没有保护基团方案的情况下形成多个游离肽段的两个或更多个区域特异性酰胺键。我们在此描述了一种半正交策略,用于连接三个未保护的肽段,其中两个含有N端(NT)半胱氨酸,以串联形成两个酰胺键,一个Xaa-SPro(硫代脯氨酸),然后是一个Xaa-半胱氨酸。该策略利用了NT-半胱氨酰肽在酸性条件下强烈倾向于选择性地进行SPro-亚胺连接而不是Cys-硫酯连接。在操作上,它是在N→C方向上进行的,首先在pH <3下通过亚胺连接,在含有羧基末端(CT)-乙醇醛酯的肽与含有NT-半胱氨酸和CT-硫酯的第二个肽之间提供一个Xaa-噻唑烷酯键。然后,新生成的带有CT-硫酯的O-酯连接片段在pH> 7时通过硫酯连接与另一个NT-半胱氨酰肽连接,形成Xaa-半胱氨酸键。同时,这种碱性条件还催化了Xaa-噻唑烷酯在第一个连接位点向Xaa-SPro键的O,N-酰基迁移,以完成串联三段连接。两个连接反应均在水性缓冲溶剂中进行。在六个由19至70个氨基酸组成的肽中测试了这种三段连接策略的有效性,包括生长抑素的硫代脯氨酸→脯氨酸类似物和两种CC趋化因子。这些肽和蛋白质中的硫代脯氨酸替代并未导致生物活性改变。通过消除保护基团方案和偶联试剂,在水溶液中多个游离肽段的串联连接扩大了蛋白质合成的范围,并可能为组合片段合成提供一种有用的方法。

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