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参与铁载体生物合成的芳基酸腺苷酸化酶:荧光偏振测定、配体特异性以及通过高通量筛选发现非核苷抑制剂。

Aryl acid adenylating enzymes involved in siderophore biosynthesis: fluorescence polarization assay, ligand specificity, and discovery of non-nucleoside inhibitors via high-throughput screening.

作者信息

Neres João, Wilson Daniel J, Celia Laura, Beck Brian J, Aldrich Courtney C

机构信息

Center for Drug Design, Academic Health Center, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

Biochemistry. 2008 Nov 11;47(45):11735-49. doi: 10.1021/bi801625b. Epub 2008 Oct 18.

Abstract

The design and synthesis of a fluorescent probe Fl-Sal-AMS 6 based on the tight-binding inhibitor 5'- O-[ N-(salicyl)sulfamoyl]adenosine (Sal-AMS) is described for the aryl acid adenylating enzymes (AAAEs) known as MbtA, YbtE, EntE, VibE, DhbE, and BasE involved in siderophore biosynthesis from Mycobacterium tuberculosis, Yersinia pestis, Escherichia coli, Vibrio cholerae, Bacillus subtilis, and Acinetobacter baumannii, respectively. The probe was successfully used to develop a fluorescence polarization assay for these six AAAEs, and equilibrium dissociation constants were determined in direct binding experiments. Fl-Sal-AMS was effective for AAAEs that utilize salicylic acid or 2,3-dihydroxybenzoic acid as native substrates, with dissociation constants ranging from 9-369 nM, but was ineffective for AsbC, the AAAE from Bacillus anthracis, which activates 3,4-dihydroxybenzoic acid. Competitive binding experiments using a series of ligands including substrates, reaction products, and inhibitors provided the first comparative structure-activity relationships for AAAEs. The fluorescence polarization assay was then miniaturized to a 384-well plate format, and high-throughput screening was performed at the National Screening Laboratory for the Regional Centers of Excellence in Biodefense and Emerging Infectious Diseases (NSRB) against BasE, an AAAE from Acinetobacter baumannii involved in production of the siderophore acinetobactin. Several small molecule inhibitors with new chemotypes were identified, and compound 23 containing a pyrazolo[5,4- a]pyridine scaffold emerged as the most promising ligand with a K D of 78 nM, which was independently confirmed by isothermal calorimetry, and inhibition was also verified in an ATP-[ (32)P]-pyrophosphate exchange steady-state kinetic assay.

摘要

基于紧密结合抑制剂5'-O-[N-(水杨基)氨磺酰基]腺苷(Sal-AMS),设计并合成了荧光探针Fl-Sal-AMS 6,用于检测参与结核分枝杆菌、鼠疫耶尔森菌、大肠杆菌、霍乱弧菌、枯草芽孢杆菌和鲍曼不动杆菌铁载体生物合成的芳基酸腺苷酸环化酶(AAAE),分别为MbtA、YbtE、EntE、VibE、DhbE和BasE。该探针成功用于开发这六种AAAE的荧光偏振测定法,并在直接结合实验中测定了平衡解离常数。Fl-Sal-AMS对利用水杨酸或2,3-二羟基苯甲酸作为天然底物的AAAE有效,解离常数范围为9 - 369 nM,但对炭疽芽孢杆菌激活3,4-二羟基苯甲酸的AAAE即AsbC无效。使用包括底物、反应产物和抑制剂在内的一系列配体进行的竞争性结合实验,首次提供了AAAE的比较构效关系。然后将荧光偏振测定法微型化至384孔板形式,并在国家生物防御和新兴传染病卓越区域中心筛选实验室(NSRB)针对参与铁载体鲍曼不动菌素生产的鲍曼不动杆菌的AAAE即BasE进行了高通量筛选。鉴定出了几种具有新化学类型的小分子抑制剂,含有吡唑并[5,4-a]吡啶支架的化合物23作为最有前景的配体出现,其KD为78 nM,通过等温滴定量热法独立确认,并且在ATP-[(32)P]-焦磷酸交换稳态动力学测定中也验证了抑制作用。

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