Jensen Knud J, Brask Jesper
Department of Natural Sciences, Section for Bioorganic Chemistry, KVL, 1871 Frederiksberg C, Denmark.
Biopolymers. 2005;80(6):747-61. doi: 10.1002/bip.20300.
Monosaccharides and amino acids are fundamental building blocks in the assembly of nature's polymers. They have different structural aspects and, to a significant extent, different functional groups. Oligomerization gives rise to oligosaccharides and peptides, respectively. While carbohydrates and peptides can be found conjoined in nature, e.g., in glycopeptides, the aim of this review is the radical redesign of peptide structures using carbohydrates, particularly monosaccharides and cyclic oligosaccharides, to produce novel peptides, peptidomimetics, and abiotic proteins. These hybrid molecules, chimeras, have properties arising largely from the combination of structural characteristics of carbohydrates with the functional group diversity of peptides. This field includes de novo designed synthetic glycopeptides, sugar (carbohydrate) amino acids, carbohydrate scaffolds for nonpeptidal peptidomimetics of cyclic peptides, cyclodextrin functionalized peptides, and carboproteins, i.e., carbohydrate-based proteinmimetics. These successful applications demonstrate the general utility of carbohydrates in peptide and protein architecture.
单糖和氨基酸是自然界聚合物组装过程中的基本构建单元。它们具有不同的结构特征,并且在很大程度上具有不同的官能团。寡聚作用分别产生了寡糖和肽。虽然碳水化合物和肽在自然界中可以结合在一起,例如在糖肽中,但本综述的目的是利用碳水化合物,特别是单糖和环状寡糖,对肽结构进行彻底重新设计,以产生新型肽、肽模拟物和非生物蛋白质。这些杂合分子,即嵌合体,其性质很大程度上源于碳水化合物结构特征与肽官能团多样性的结合。该领域包括从头设计的合成糖肽、糖(碳水化合物)氨基酸、用于环肽非肽类肽模拟物的碳水化合物支架、环糊精功能化肽以及碳蛋白,即基于碳水化合物的蛋白质模拟物。这些成功的应用证明了碳水化合物在肽和蛋白质结构构建中的普遍实用性。