Meldal M, St Hilaire P M
Carlsberg Laboratory, Department of Chemistry, Gamle Carlsberg Vej 10, DK-2500, Valby, Copenhagen, Denmark.
Curr Opin Chem Biol. 1997 Dec;1(4):552-63. doi: 10.1016/s1367-5931(97)80052-x.
The technology of glycopeptide synthesis has recently developed into a fully mature science capable of creating diverse glycopeptides of biological interest, even in combinatorial displays. This has allowed biochemists to investigate substrate specificity in the biosynthetic processing and immunology of various protein glycoforms. The construction of all the mucin core structures and a variety of cancer-related glycopeptides has facilitated detailed analysis of the interaction between MHC-bound glycopeptides and T cell receptors. Novel dendritic neoglycopeptide ligands have been shown to demonstrate high affinity for carbohydrate receptors and these interactions are highly dendrimer specific. Large complex N-linked oligosaccharides have been introduced into glycopeptides using synthetic or chemoenzymatic procedures, both methods affording pure glycopeptides corresponding to a single glycoform in preparative quantities. The improved availability of glycosyl transferases has led to increased use of chemoenzymatic synthesis. Chemical ligation has been introduced as a method of attaching glycans to peptide templates. Combinatorial synthesis and the analysis of resin-bound glycopeptide libraries have been successfully carried out by applying the ladder synthesis principle. Direct quantitative glycosylation of peptide templates on solid phase has paved the way for the synthesis of templated glycopeptide mixtures as libraries of libraries.
糖肽合成技术最近已发展成为一门完全成熟的科学,能够创造出具有生物学意义的各种糖肽,甚至在组合展示中也是如此。这使生物化学家能够研究各种蛋白质糖型在生物合成加工和免疫学中的底物特异性。所有粘蛋白核心结构和多种癌症相关糖肽的构建,有助于详细分析与主要组织相容性复合体(MHC)结合的糖肽与T细胞受体之间的相互作用。新型树枝状新糖肽配体已被证明对碳水化合物受体具有高亲和力,并且这些相互作用具有高度的树枝状聚合物特异性。已使用合成或化学酶法将大型复杂的N-连接寡糖引入糖肽中,这两种方法都能以制备量提供对应于单一糖型的纯糖肽。糖基转移酶可用性的提高导致化学酶法合成的使用增加。化学连接已作为一种将聚糖连接到肽模板上的方法被引入。通过应用阶梯合成原理,已成功进行了组合合成和树脂结合糖肽文库的分析。肽模板在固相上的直接定量糖基化,为作为文库之文库的模板化糖肽混合物的合成铺平了道路。