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通过LpxE偶联孔雀石绿测定法分析磺酰哌嗪LpxH抑制剂的构效关系

Structure-Activity Relationship of Sulfonyl Piperazine LpxH Inhibitors Analyzed by an LpxE-Coupled Malachite Green Assay.

作者信息

Lee Minhee, Zhao Jinshi, Kwak Seung-Hwa, Cho Jae, Lee Myungju, Gillespie Robert A, Kwon Do-Yeon, Lee Hyunji, Park Hyun-Ju, Wu Qinglin, Zhou Pei, Hong Jiyong

机构信息

Department of Chemistry , Duke University , 124 Science Drive , Box 90346, Durham , North Carolina 27708 , United States.

Department of Biochemistry , Duke University Medical Center , Box 3711, Durham , North Carolina 27710 , United States.

出版信息

ACS Infect Dis. 2019 Apr 12;5(4):641-651. doi: 10.1021/acsinfecdis.8b00364. Epub 2019 Feb 5.

Abstract

The UDP-2,3-diacylglucosamine pyrophosphatase LpxH in the Raetz pathway of lipid A biosynthesis is an essential enzyme in the vast majority of Gram-negative pathogens and an excellent novel antibiotic target. The P-radioautographic thin-layer chromatography assay has been widely used for analysis of LpxH activity, but it is inconvenient for evaluation of a large number of LpxH inhibitors over an extended time period. Here, we report a coupled, nonradioactive LpxH assay that utilizes the recently discovered Aquifex aeolicus lipid A 1-phosphatase LpxE for quantitative removal of the 1-phosphate from lipid X, the product of the LpxH catalysis; the released inorganic phosphate is subsequently quantified by the colorimetric malachite green assay, allowing the monitoring of the LpxH catalysis. Using such a coupled enzymatic assay, we report the biochemical characterization of a series of sulfonyl piperazine LpxH inhibitors. Our analysis establishes a preliminary structure-activity relationship for this class of compounds and reveals a pharmacophore of two aromatic rings, two hydrophobic groups, and one hydrogen-bond acceptor. We expect that our findings will facilitate the development of more effective LpxH inhibitors as potential antibacterial agents.

摘要

脂多糖A生物合成的赖茨途径中的UDP-2,3-二酰基葡糖胺焦磷酸酶LpxH是绝大多数革兰氏阴性病原体中的一种必需酶,也是一个出色的新型抗生素靶点。P-放射自显影薄层色谱分析法已被广泛用于分析LpxH活性,但在较长时间内评估大量LpxH抑制剂时不太方便。在此,我们报告一种偶联的非放射性LpxH分析方法,该方法利用最近发现的嗜热栖热菌脂多糖A 1-磷酸酶LpxE对LpxH催化产物脂质X中的1-磷酸进行定量去除;随后通过比色孔雀绿分析法对释放的无机磷酸盐进行定量,从而监测LpxH催化反应。利用这种偶联酶分析法,我们报告了一系列磺酰哌嗪LpxH抑制剂的生化特性。我们的分析建立了这类化合物的初步构效关系,并揭示了由两个芳香环、两个疏水基团和一个氢键受体组成的药效基团。我们期望我们的研究结果将有助于开发更有效的LpxH抑制剂作为潜在的抗菌剂。

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