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系统合成细菌庚糖生物合成途径的前两个酶的抑制剂:针对脂多糖生物合成的抗毒力分子。

Systematic synthesis of inhibitors of the two first enzymes of the bacterial heptose biosynthetic pathway: towards antivirulence molecules targeting lipopolysaccharide biosynthesis.

机构信息

Chemistry Department, University of Namur, rue de Bruxelles 61, 5000 Namur, Belgium.

出版信息

Chemistry. 2011 Sep 26;17(40):11305-13. doi: 10.1002/chem.201100396. Epub 2011 Aug 26.

DOI:10.1002/chem.201100396
PMID:21922563
Abstract

L-Heptoses (L-glycero-D-manno-heptopyranoses) are constituents of the inner core of lipolysaccharide (LPS), a molecule playing key roles in the mortality of many infectious diseases as well as in the virulence of many human pathogens. The inhibition of the first enzymes of the bacterial heptose biosynthetic pathway is an almost unexplored field to date although it appears to be a very novel way for the development of antivirulence drugs. We report the synthesis of a series of D-glycero-D-manno-heptopyranose 7-phosphate (H7P) analogues and their inhibition properties against the isomerase GmhA and the the kinase HldE, the two first enzymes of the bacterial heptose biosynthetic pathway. The heptose structures have been modified at the 1-, 2-, 6- and 7-positions to probe the importance of the key structural features of H7P that allow a tight binding to the target enzymes; H7P being the product of GmhA and the substrate of HldE, the second objective was to find structures that could simultaneously inhibit both enzymes. We found that GmhA and HldE were extremely sensitive to structural modifications at the 6- and 7- positions of the heptose scaffold. To our surprise, the epimeric analogue of H7P displaying a D-glucopyranose configuration was found to be the best inhibitor of both enzymes but also the only molecule of this series that could inhibit GmhA (IC(50)=34 μM) and HldE (IC(50)=9.4 μM) in the low micromolar range. Noteworthy, this study describes the first inhibitors of GmhA ever reported, and paves the way to the design of a second generation of molecules targeting the bacterial virulence.

摘要

L-庚糖(L-甘油-D-甘露庚吡喃糖)是脂多糖(LPS)内部核心的组成部分,LPS 作为许多传染病死亡率以及许多人类病原体毒力的关键分子发挥作用。迄今为止,抑制细菌庚糖生物合成途径的第一个酶几乎没有被探索过,尽管它似乎是开发抗毒力药物的一种非常新颖的方法。我们报告了一系列 D-甘油-D-甘露庚吡喃糖 7-磷酸(H7P)类似物的合成及其对异构酶 GmhA 和激酶 HldE 的抑制特性,这两种酶是细菌庚糖生物合成途径的前两个酶。庚糖结构在 1-、2-、6-和 7-位进行了修饰,以探究 H7P 与靶酶紧密结合的关键结构特征的重要性;H7P 是 GmhA 的产物和 HldE 的底物,第二个目标是找到可以同时抑制这两种酶的结构。我们发现 GmhA 和 HldE 对庚糖支架 6-和 7-位的结构修饰极为敏感。令我们惊讶的是,H7P 的差向异构体,即具有 D-吡喃葡萄糖构型的类似物,被发现是这两种酶的最佳抑制剂,也是该系列中唯一一种能够在低微摩尔范围内抑制 GmhA(IC50=34 μM)和 HldE(IC50=9.4 μM)的分子。值得注意的是,这项研究描述了首个报道的 GmhA 抑制剂,并为设计针对细菌毒力的第二代分子铺平了道路。

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