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糖氨基酸:用于组合合成的构建模块——对药物发现的启示

Glycosamino acids: building blocks for combinatorial synthesis-implications for drug discovery.

作者信息

Schweizer Frank

机构信息

The Noguchi Institute 1-8-1, Kaga, Itabashi-ku, Tokyo 173-0003, Japan.

出版信息

Angew Chem Int Ed Engl. 2002 Jan 18;41(2):231-53. doi: 10.1002/1521-3773(20020118)41:2<230::aid-anie230>3.0.co;2-l.

Abstract

The unique functions of carbohydrates, including energy storage, transport, modulation of protein function, intercellular adhesion, signal transduction, malignant transformation, and viral and bacterial cell-surface recognition, underlie a significant pharmaceutical potential. The development of combinatorial carbohydrate libraries in this important arena has been slow, in contrast to the rapid development of combinatorial synthesis in the area of small-molecule libraries and biopolymers. This is largely as a result of the inherent difficulties presented by this class of polyfunctional compounds. Nevertheless, strategies to cope with these problems have been devised over the past seven years, and combinatorial carbohydrate libraries have appeared. The incorporation of an amino acid moiety into the carbohydrate scaffold generates glycosamino acids, which are attractive building blocks for the preparation of carbohydrate-based libraries because of the well-established automated peptide synthesis. Derivatization as well as homo- and heterooligomerization of glycosamino acids can be used to create novel structures with unique properties. Glycosamino acids are hybrid structures of carbohydrates and amino acids which can be utilized to generate potential glycomimetics and peptidomimetics. The incorporation of glycosamino acids into peptides allows the engineering of carbohydrate-binding sites into synthetic polypeptides, which may also influence the pharmacokinetic and dynamic properties of the peptides. Furthermore, sugar-amino acid hybrids offer a tremendous structural and functional diversity, which is largely unexplored and requires combinatorial strategies for efficient exploitation. This article provides an overview of previous work on glycosamino acids and discusses their use in combinatorial synthesis and drug discovery. Supporting information for this article is available on the WWW under http://www.angewandte.com or from the author.

摘要

碳水化合物具有独特的功能,包括能量储存、运输、蛋白质功能调节、细胞间黏附、信号转导、恶性转化以及病毒和细菌细胞表面识别等,这些功能奠定了其巨大的药学潜力。与小分子文库和生物聚合物领域组合合成的快速发展形成对比的是,在这个重要领域中组合碳水化合物文库的发展一直较为缓慢。这主要是由于这类多官能化合物存在固有的困难。然而,在过去七年中已经设计出应对这些问题的策略,组合碳水化合物文库也已出现。将氨基酸部分引入碳水化合物支架中可生成糖氨基酸,由于成熟的自动化肽合成技术,糖氨基酸是制备基于碳水化合物的文库的有吸引力的构建单元。糖氨基酸的衍生化以及同聚和异聚可用于创建具有独特性质的新结构。糖氨基酸是碳水化合物和氨基酸的杂合结构,可用于生成潜在的糖模拟物和肽模拟物。将糖氨基酸掺入肽中可使碳水化合物结合位点在合成多肽中得以构建,这也可能影响肽的药代动力学和动力学性质。此外,糖 - 氨基酸杂化物具有巨大的结构和功能多样性,这在很大程度上尚未被探索,需要组合策略来进行有效开发。本文概述了以前关于糖氨基酸的工作,并讨论了它们在组合合成和药物发现中的应用。本文的支持信息可在万维网上通过http://www.angewandte.com获取,或向作者索取。

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