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叠氮转移和点击化学在赖氨酸基糖树状大分子作为抗大肠埃希氏菌 FimH 拮抗剂的固相合成中的应用。

Diazo transfer and click chemistry in the solid phase syntheses of lysine-based glycodendrimers as antagonists against Escherichia coli FimH.

机构信息

PharmaQAM, Department of Chemistry, Université du Québec à Montréal, PO Box 8888, Succ Centre-ville, Montréal, Québec, Canada.

出版信息

Mol Pharm. 2012 Mar 5;9(3):394-403. doi: 10.1021/mp200490b. Epub 2012 Jan 20.

DOI:10.1021/mp200490b
PMID:22201286
Abstract

Uropathogenic Escherichia coli infections, ultimately leading to cystitis and pyelonephritis, are initially mediated by the adhesion of the bacterial FimH to the transmembrane glycoprotein uroplakin-1a present at the surface of urothelial cells. The adhesion is based on the recognition and high avidity binding between the high-mannose glycans of the uroplakin and the FimH, a mannose-specific lectin located at the tip of type 1 fimbriae. We found that synthetic multiantennary mannopyranosides glycodendrons, harboring triazole functionality at the anomeric position, were potent hemagglutination inhibitors of guinea pig erythrocytes and E. coli. A mannosylated dendrimer exposing up to sixteen sugar residues showed an HAI titer of 1 μM and was thus 500-fold more potent than the corresponding monovalent methyl α-d-mannopyranoside. The synthesis of the glycodendrons involved highly efficient solid-phase synthesis of branched l-lysine scaffolds, diazo transfer reaction on the terminal amine residues, and 1,3-dipolar copper-catalyzed azide-alkyne cycloaddition using propargyl α-d-mannopyranoside.

摘要

尿路致病性大肠杆菌感染,最终导致膀胱炎和肾盂肾炎,最初是由细菌 FimH 与尿路上皮细胞表面存在的跨膜糖蛋白 uroplakin-1a 的粘附介导的。这种粘附基于尿路上皮和 FimH 之间甘露糖特异性凝集素识别和高亲和力结合,该凝集素位于 1 型菌毛的顶端。我们发现,在非还原端具有三唑官能团的合成多臂甘露吡喃糖苷糖树状大分子是豚鼠红细胞和大肠杆菌的有效血凝抑制物。暴露多达 16 个糖残基的甘露糖基化树枝状大分子的 HAI 效价为 1 μM,因此比相应的单价甲基 α-d-甘露吡喃糖苷强 500 倍。糖树状大分子的合成涉及支化 l-赖氨酸支架的高效固相合成、末端胺残基的重氮转移反应以及使用炔丙基 α-d-甘露吡喃糖苷的 1,3-偶极铜催化叠氮-炔烃环加成反应。

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