Camarero Julio A, Hackel Benjamin J, de Yoreo James J, Mitchell Alexander R
Chemical Biology and Nuclear Sciences Division, Lawrence Livermore National Laboratory, University of California, 7000 East Avenue, Livermore, California 94550, USA.
J Org Chem. 2004 Jun 11;69(12):4145-51. doi: 10.1021/jo040140h.
C-Terminal peptide thioesters are key intermediates in the synthesis/semisynthesis of proteins and of cyclic peptides by native chemical ligation. They are prepared by solid-phase peptide synthesis (SPPS) or biosynthetically by protein splicing techniques. Until recently, the chemical synthesis of C-terminal alpha-thioester peptides by SPPS was largely restricted to the use of Boc/Benzyl chemistry due to the poor stability of the thioester bond to the basic conditions required for the deprotection of the N(alpha)-Fmoc group. In the present work, we describe a new method for the SPPS of C-terminal thioesters using Fmoc/t-Bu chemistry. This method is based on the use of an aryl hydrazine linker, which is totally stable to conditions required for Fmoc-SPPS. When the peptide synthesis has been completed, activation of the linker is achieved by mild oxidation. This step converts the acyl hydrazine group into a highly reactive acyl diazene intermediate which reacts with an alpha-amino acid alkyl thioester (H-AA-SR) to yield the corresponding peptide alpha-thioester in good yield. This method has been successfully used to prepare a variety of peptide thioesters, cyclic peptides, and a fully functional Src homology 3 (SH3) protein domain.
C 端肽硫酯是通过天然化学连接进行蛋白质和环肽合成/半合成的关键中间体。它们通过固相肽合成(SPPS)制备,或者通过蛋白质剪接技术进行生物合成。直到最近,由于硫酯键对 N(α)-Fmoc 基团脱保护所需的碱性条件稳定性较差,通过 SPPS 化学合成 C 端α-硫酯肽在很大程度上局限于使用 Boc/苄基化学方法。在本工作中,我们描述了一种使用 Fmoc/t-Bu 化学方法进行 C 端硫酯固相肽合成的新方法。该方法基于使用一种芳基肼连接子,它对 Fmoc-SPPS 所需的条件完全稳定。当肽合成完成后,通过温和氧化实现连接子的活化。这一步将酰肼基团转化为高反应性的酰基重氮中间体,该中间体与α-氨基酸烷基硫酯(H-AA-SR)反应,以良好的产率生成相应的肽α-硫酯。该方法已成功用于制备多种肽硫酯、环肽和一个具有完整功能的 Src 同源 3(SH3)蛋白结构域。