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基于糖密码的药物化学:凝集素学基础及以凝集素为靶点的实验策略

Medicinal chemistry based on the sugar code: fundamentals of lectinology and experimental strategies with lectins as targets.

作者信息

Rüdiger H, Siebert H C, Solís D, Jiménez-Barbero J, Romero A, von der Lieth C W, Diaz-Mariño T, Gabius H J

机构信息

Institut für Pharmazie und Lebensmittelchemie, Julius-Maximilians-Universität, Am Hubland, Würzburg, D-97074, Germany.

出版信息

Curr Med Chem. 2000 Apr;7(4):389-416. doi: 10.2174/0929867003375164.

Abstract

Theoretical calculations reveal that oligosaccharides are second to no other class of biochemical oligomery in terms of coding capacity. As integral part of cellular glycoconjugates they can serve as recognitive units for receptors (lectins). Having first been detected in plants, lectins are present ubiquitously. Remarkably for this field, they serve as bacterial and viral adhesins. Following a description of these branches of lectinology to illustrate history, current status and potential for medicinal chemistry, we document that lectins are involved in a wide variety of biochemical processes including intra- and intercellular glycoconjugate trafficking, initiation of signal transduction affecting e. g. growth regulation and cell adhesion in animals. It is thus justified to compare crucial carbohydrate epitopes with the postal code ensuring correct mail routing and delivery. In view of the functional relevance of lectins the design of high-affinity reagents to occupy their carbohydrate recognition domains offers the perspective for an attractive source of new drugs. Their applications can be supposed to encompass the use as cell-type-selective determinant for targeted drug delivery and as blocking devices in anti-adhesion therapy during infections and inflammatory disease. To master the task of devising custom-made glycans/glycomimetics for this purpose, the individual enthalpic and entropic contributions in the molecular rendezvous between the sugar receptor under scrutiny and its ligand in the presence of solvent molecules undergoing positional rearrangements need to be understood and rationally exploited. As remunerative means to this end, cleverly orchestrated deployment of a panel of methods is essential. Concerning the carbohydrate ligand, its topological parameters and flexibility are assessed by the combination of computer-assisted molecular-mechanics and molecular-dynamics calculations and NMR-spectroscopic measurements. In the presence of the receptor, the latter technique will provide insights into conformational aspects of the bound ligand and into spatial vicinity of the ligand to distinct side chains of amino acids establishing the binding site in solution. Also in solution, the hydrogen-bonding pattern in the complex can be mapped with monodeoxy and monofluoro derivatives of the oligosaccharide. Together with X-ray crystallographic and microcalorimetric studies the limits of a feasible affinity enhancement can be systematically probed. With galactoside-binding lectins as instructive mo del, recent progress in this area of drug design will be documented, emphasizing the general applicability of the outlined interdisciplinary approach.

摘要

理论计算表明,就编码能力而言,寡糖仅次于其他任何一类生化低聚物。作为细胞糖缀合物的组成部分,它们可作为受体(凝集素)的识别单元。凝集素最早在植物中被发现,如今广泛存在。在该领域值得注意的是,它们可作为细菌和病毒的黏附素。在描述凝集素学的这些分支以阐明其历史、现状及药物化学潜力之后,我们证明凝集素参与了多种生化过程,包括细胞内和细胞间糖缀合物的运输、影响动物生长调节和细胞黏附等的信号转导起始。因此,将关键的碳水化合物表位与确保邮件正确路由和投递的邮政编码进行比较是合理的。鉴于凝集素的功能相关性,设计占据其碳水化合物识别域的高亲和力试剂为新药的有吸引力来源提供了前景。它们的应用可能包括用作靶向药物递送的细胞类型选择性决定因素以及在感染和炎症性疾病的抗黏附治疗中用作阻断剂。为了掌握为此设计定制聚糖/糖模拟物的任务,需要理解并合理利用在受研究的糖受体与其配体在经历位置重排的溶剂分子存在下的分子结合中各个焓和熵的贡献。作为实现此目的的有利手段,巧妙地精心部署一组方法至关重要。关于碳水化合物配体,其拓扑参数和灵活性通过计算机辅助分子力学和分子动力学计算以及核磁共振光谱测量的组合来评估。在存在受体的情况下,后一种技术将提供有关结合配体的构象方面以及配体与在溶液中建立结合位点的氨基酸不同侧链的空间邻近性的见解。同样在溶液中,寡糖的单脱氧和单氟衍生物可绘制复合物中的氢键模式。与X射线晶体学和微量热分析研究一起,可以系统地探究可行的亲和力增强的限度。以半乳糖苷结合凝集素作为指导性模型,将记录该药物设计领域的最新进展,强调所述跨学科方法的普遍适用性。

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