Norgren Anna S, Norberg Thomas, Arvidsson Per I
Department of Biochemistry & Organic Chemistry, Uppsala University, S-75123 Uppsala, Sweden.
J Pept Sci. 2007 Nov;13(11):717-27. doi: 10.1002/psc.832.
Fmoc-protected beta(3)hserine (beta(3)hSer) was prepared and O-linked to suitably protected N-acetylgalactosamine (GalNAc) and N-acetylglucosamine (GlcNAc) derivatives. Glycosylation of beta(3)hSer was made by two independent routes: either by direct glycosyl linkage to the beta(3)hSer, or linkage to natural L-Ser and then utilizing the carbohydrate moiety as a protecting group in an Arndt-Eistert homologation. Both procedures gave the novel glycosylated beta(3)-amino acids Fmoc-beta(3)hSer(alpha-D-GalNAc(Ac)(3))-OH (1a), its beta-anomer (1b), and Fmoc-beta(3)hSer(beta-D-GlcNAc(Ac)(3))-OH (2), which were utilized in the solid-phase peptide synthesis of four glycosylated dipeptides (3a-d) and two heptapeptides (4a-b). The preparation of beta-amino acids bearing common post-translational modifiers represents an important step towards functionalized foldamers with broad applications in biomedical research.
制备了Fmoc保护的β(3)h丝氨酸(β(3)hSer),并将其O连接到适当保护的N-乙酰半乳糖胺(GalNAc)和N-乙酰葡糖胺(GlcNAc)衍生物上。β(3)hSer的糖基化通过两条独立的路线进行:要么直接与β(3)hSer进行糖基连接,要么与天然L-丝氨酸连接,然后在阿恩特-艾斯特尔特同系化反应中利用碳水化合物部分作为保护基团。两种方法都得到了新型糖基化的β(3)-氨基酸Fmoc-β(3)hSer(α-D-GalNAc(Ac)(3))-OH(1a)、其β-异头物(1b)以及Fmoc-β(3)hSer(β-D-GlcNAc(Ac)(3))-OH(2),这些被用于四种糖基化二肽(3a - d)和两种七肽(4a - b)的固相肽合成。带有常见翻译后修饰的β-氨基酸的制备是朝着在生物医学研究中有广泛应用的功能化折叠体迈出的重要一步。