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前所未有的磺酰化膦酸外消旋化糖的合成,设计为三种分枝杆菌半乳糖呋喃糖加工酶的抑制剂。

Synthesis of Unprecedented Sulfonylated Phosphono-exo-Glycals Designed as Inhibitors of the Three Mycobacterial Galactofuranose Processing Enzymes.

机构信息

University of Namur (UNamur), Département de Chimie, Laboratoire de Chimie Bio-Organique, rue de Bruxelles 61, 5000, Namur, Belgium.

The Key Laboratory of Chemistry for Natural Products of Guizhou Province, Chinese Academy of Sciences, 202, Sha-chong South Road, Guiyang, 550002, P. R. China.

出版信息

Chemistry. 2016 Oct 24;22(44):15913-15920. doi: 10.1002/chem.201603161. Epub 2016 Sep 15.

Abstract

This study reports a new methodology to synthesize exo-glycals bearing both a sulfone and a phosphonate. This synthetic strategy provides a way to generate exo-glycals displaying two electron-withdrawing groups and was applied to eight different carbohydrates from the furanose and pyranose series. The Z/E configurations of these tetrasubstituted enol ethers could be ascertained using NMR spectroscopic techniques. Deprotection of an exo-glycal followed by an UMP (uridine monophosphate) coupling generated two new UDP (uridine diphosphate)-galactofuranose analogues. These two Z/E isomers were evaluated as inhibitors of UGM, GlfT1, and GlfT2, the three mycobacterial galactofuranose processing enzymes. Molecule 46-(E) is the first characterized inhibitor of GlfT1 reported to date and was also found to efficiently inhibit UGM in a reversible manner. Interestingly, GlfT2 showed a better affinity for the (Z) isomer. The three enzymes studied in the present work are not only interesting because, mechanistically, they are still the topic of intense investigations, but also because they constitute very important targets for the development of novel antimycobacterial agents.

摘要

本研究报告了一种新的方法来合成同时具有砜基和膦酸酯基的外糖。这种合成策略提供了一种生成显示两个吸电子基团的外糖的方法,并应用于呋喃糖和吡喃糖系列中的八种不同的碳水化合物。这些四取代烯醇醚的 Z/E 构型可以使用 NMR 光谱技术确定。外糖的脱保护后,与 UMP(尿苷单磷酸)偶联生成了两种新的 UDP(尿苷二磷酸)-半乳糖呋喃糖类似物。这两种 Z/E 异构体被评估为 UGM、GlfT1 和 GlfT2(三种分枝杆菌半乳糖呋喃糖加工酶)的抑制剂。46-(E) 是迄今为止报道的第一个鉴定为 GlfT1 抑制剂的分子,并且还被发现以可还原的方式有效地抑制 UGM。有趣的是,GlfT2 对(Z)异构体表现出更好的亲和力。本研究中研究的三种酶不仅因为在机制上它们仍然是深入研究的主题而有趣,而且因为它们是开发新型抗分枝杆菌药物的非常重要的靶标。

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