André Sabine, O'Sullivan Shane, Koller Christiane, Murphy Paul V, Gabius Hans-Joachim
Institute of Physiological Chemistry, Faculty of Veterinary Medicine, Ludwig-Maximilians-University Munich, Veterinärstr. 13, 80539 Munich, Germany.
Org Biomol Chem. 2015 Apr 14;13(14):4190-203. doi: 10.1039/c5ob00048c. Epub 2015 Feb 27.
Emerging insights into the functional spectrum of tissue lectins leads to identification of new targets for the custom-made design of potent inhibitors, providing a challenge for synthetic chemistry. The affinity and selectivity of a carbohydrate ligand for a lectin may immensely be increased by a number of approaches, which includes varying geometrical or topological features. This perspective leads to the design and synthesis of glycoclusters and their testing using assays of physiological relevance. Herein, hydroquinone, resorcinol, benzene-1,3,5-triol and tetra(4-hydroxyphenyl)ethene have been employed as scaffolds and propargyl derivatives obtained. The triazole-containing linker to the α/β-O/S-glycosides of GlcNAc/GalNAc presented on these scaffolds was generated by copper-catalysed azide-alkyne cycloaddition. This strategy was used to give a panel of nine glycoclusters with bi-, tri- and tetravalency. Maintained activity for lectin binding after conjugation was ascertained for both sugars in solid-phase assays with the plant agglutinins WGA (GlcNAc) and DBA (GalNAc). Absence of cross-reactivity excluded any carbohydrate-independent reactivity of the bivalent compounds, allowing us to proceed to further testing with a biomedically relevant lectin specific for GalNAc. Macrophage galactose(-binding C)-type lectin, involved in immune defence by dendritic cells and in virus uptake, was produced as a soluble protein without/with its α-helical coiled-coil stalk region. Binding to ligands presented on a matrix and on cell surfaces was highly susceptible to the presence of the tetravalent inhibitor derived from the tetraphenylethene-containing scaffold, and presentation of GalNAc with an α-thioglycosidic linkage proved favorable. Cross-reactivity of this glycocluster to human galectins-3 and -4, which interact with Tn-antigen-presenting mucins, was rather small. Evidently, the valency and spatial display of α-GalNAc residues is a key factor to design potent and selective inhibitors for this lectin.
对组织凝集素功能谱的新见解促使人们确定了用于定制设计强效抑制剂的新靶点,这给合成化学带来了挑战。通过多种方法可以极大地提高碳水化合物配体对凝集素的亲和力和选择性,其中包括改变几何或拓扑特征。这种观点促使了糖簇的设计与合成,并使用具有生理相关性的检测方法对其进行测试。在此,对苯二酚、间苯二酚、苯-1,3,5-三醇和四(4-羟基苯基)乙烯被用作支架,并获得了炔丙基衍生物。通过铜催化的叠氮化物-炔烃环加成反应,在这些支架上生成了与GlcNAc/GalNAc的α/β-O/S-糖苷相连的含三唑连接子。该策略用于制备一组具有二价、三价和四价的九个糖簇。在与植物凝集素WGA(GlcNAc)和DBA(GalNAc)的固相检测中,确定了两种糖在缀合后对凝集素结合的活性得以维持。二价化合物不存在交叉反应,排除了任何与碳水化合物无关的反应性,使我们能够继续用对GalNAc具有生物医学相关性的凝集素进行进一步测试。巨噬细胞半乳糖(-结合C)-型凝集素参与树突状细胞的免疫防御和病毒摄取,它作为一种可溶性蛋白被制备出来,有无α-螺旋卷曲螺旋茎区域。与基质和细胞表面上呈现的配体的结合对源自含四苯基乙烯支架的四价抑制剂的存在高度敏感,并且带有α-硫代糖苷键的GalNAc的呈现被证明是有利的。这种糖簇与人半乳糖凝集素-3和-4的交叉反应相当小,人半乳糖凝集素-3和-4与呈现Tn抗原的粘蛋白相互作用。显然,α-GalNAc残基的价态和空间展示是设计针对这种凝集素的强效和选择性抑制剂的关键因素。