Yang Yu-Ying, Ficht Simon, Brik Ashraf, Wong Chi-Huey
Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.
J Am Chem Soc. 2007 Jun 20;129(24):7690-701. doi: 10.1021/ja0708971. Epub 2007 May 25.
Sugar-assisted ligation (SAL) presents an attractive strategy for the synthesis of glycopeptides, including the synthesis of cysteine-free beta-O-linked and N-linked glycopeptides. Here we extended the utility of SAL for the synthesis of alpha-O-linked glycopeptides and glycoproteins. In order to explore SAL in the context of glycoprotein synthesis, we developed a new chemical synthetic route for the alpha-O-linked glycoprotein diptericin epsilon. In the first stage of our synthesis, diptericin segment Cys(Acm)37-Gly(52) and segment Val(53)-Phe(82) were assembled by SAL through a Gly-Val ligation junction. Subsequently, after Acm deprotection, diptericin segment Cys(37)-Phe(82) was ligated to segment Asp(1)-Asn(36) by means of native chemical ligation (NCL) to give the full sequence of diptericin epsilon. In the final synthetic step, hydrogenolysis was applied to remove the thiol handle from the sugar moiety with the concomitant conversion of mutated Cys(37) into the native alanine residue. In addition, we extended the applicability of SAL to the synthesis of glycopeptides containing cysteine residues by carrying out selective desulfurization of the sulfhydryl-modified sugar moiety in the presence of acetamidomethyl (Acm) protected cysteine residues. The results presented here demonstrated for the first time that SAL could be a general and useful tool in the chemical synthesis of glycoproteins.
糖辅助连接(SAL)为糖肽的合成提供了一种有吸引力的策略,包括无半胱氨酸的β-O-连接和N-连接糖肽的合成。在此,我们扩展了SAL在α-O-连接糖肽和糖蛋白合成中的应用。为了在糖蛋白合成背景下探索SAL,我们开发了一种用于α-O-连接糖蛋白双翅菌素ε的新化学合成路线。在我们合成的第一阶段,双翅菌素片段Cys(Acm)37-Gly(52)和片段Val(53)-Phe(82)通过SAL经Gly-Val连接位点组装。随后,在Acm脱保护后,双翅菌素片段Cys(37)-Phe(82)通过天然化学连接(NCL)与片段Asp(1)-Asn(36)连接,得到双翅菌素ε的完整序列。在最后的合成步骤中,应用氢解从糖部分去除硫醇手柄,同时将突变的Cys(37)转化为天然丙氨酸残基。此外,我们通过在乙酰氨基甲基(Acm)保护的半胱氨酸残基存在下对巯基修饰的糖部分进行选择性脱硫,将SAL的适用性扩展到含半胱氨酸残基的糖肽合成。此处给出的结果首次证明SAL可能是糖蛋白化学合成中的一种通用且有用的工具。