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基于苯二胺的二价糖环芳烷:支架刚性和配体间隔对具有不同糖组学分型的细胞系统中凝集素结合影响的分析与合成。

Phenylenediamine-based bivalent glycocyclophanes: synthesis and analysis of the influence of scaffold rigidity and ligand spacing on lectin binding in cell systems with different glycomic profiles.

机构信息

Institute of Physiological Chemistry, Faculty of Veterinary Medicine, Ludwig-Maximilians-University Munich, Veterinärstr. 13, 80539 Munich, Germany.

出版信息

Org Biomol Chem. 2009 Nov 21;7(22):4715-25. doi: 10.1039/b913010a. Epub 2009 Sep 23.

Abstract

The conjugation of carbohydrates to synthetic scaffolds has the goal of preparing potent inhibitors of lectin binding. We herein report the synthesis of a panel of bivalent compounds (cyclophane and terephthalamide-derivatives) then used to establish the influence of scaffold flexibility on respective inhibitory potency in a medically relevant test system. Synthetic routes to two phenylenediamine-based glycocyclophanes involving Ugi reactions of glucuronic acid derivatives and subsequent ring closing metathesis are described, as are improvements for producing terephthalamide-based carbohydrate carriers. Assays were performed with human tumour cells measuring quantitatively the influence of the test compounds on fluorescent surface staining by labelled lectins. Biological evaluation using two different lines of cancer cells as well as cells with known alterations in the glycomic profile (cells treated with an inhibitor of glycan processing and a glycosylation mutant) reduced the risk of generating premature generalizations regarding inhibitor potency. Bioactivity relative to free mannose was invariably determined for the synthetic compounds. A clear trend for enhanced inhibitory properties for macrocyclic compounds compared to non-macrocyclic derivatives was discerned for one type of glycocyclophane. Herein we also document the impact of altering the spacing between the mannose residues, altering cell surface ligand density and cell-type reactivity. The applied strategy for the cell assays is proposed to be of general importance in the quest to identify medically relevant lectin inhibitors.

摘要

碳水化合物与合成支架的连接旨在制备有效的凝集素结合抑制剂。我们在此报告了一系列二价化合物(环芳烷和对苯二甲酰胺衍生物)的合成,然后用于在医学相关测试系统中建立支架灵活性对各自抑制效力的影响。描述了涉及葡萄糖醛酸衍生物的 Ugi 反应和随后的闭环复分解的两种基于苯二胺的糖环芳烷的合成路线,以及用于生产对苯二甲酰胺基碳水化合物载体的改进方法。通过定量测量测试化合物对标记凝集素荧光表面染色的影响来进行测定。使用两种不同的癌细胞系以及糖基组学图谱已知改变的细胞(用聚糖处理抑制剂和糖基化突变体处理的细胞)进行生物学评估,降低了对抑制剂效力产生过早概括的风险。相对于游离甘露糖,合成化合物的生物活性始终得到确定。与非大环衍生物相比,对于一种类型的糖环芳烷,大环化合物的抑制特性增强的趋势明显。本文还记录了改变甘露糖残基之间的间隔、改变细胞表面配体密度和细胞类型反应性的影响。所应用的细胞测定策略被提议在寻找具有医学相关性的凝集素抑制剂方面具有普遍重要性。

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