Two natural compounds as potential inhibitors against the Helicobacter pylori and Acinetobacter baumannii IspD enzymes

化学 鲍曼不动杆菌 生物化学 甲戊酸途径 抗菌剂 萜类 ATP合酶 细菌 生物合成 生物 遗传学 铜绿假单胞菌 有机化学
作者
Xiaoyu Chen,Huilin Zhao,Chuandong Wang,Mostafa M. Hamed,Qinghong Shang,Yating Yang,Xiaotong Diao,Xiangnan Sun,Wei Hu,Xukai Jiang,You‐Ming Zhang,Anna K. H. Hirsch,Dalei Wu,Jingjing Zhuang
出处
期刊:International Journal of Antimicrobial Agents [Elsevier]
卷期号:63 (5): 107160-107160 被引量:4
标识
DOI:10.1016/j.ijantimicag.2024.107160
摘要

In a vast majority of bacteria, protozoa and plants, the methylerythritol phosphate (MEP) pathway is utilized for the synthesis of isopentenyl diphosphate (IDP) and dimethylallyl diphosphate (DMADP), which are precursors for isoprenoids. Isoprenoids, such as cholesterol and coenzyme Q, play a variety of crucial roles in physiological activities, including cell-membrane formation, protein degradation, cell apoptosis, and transcription regulation. In contrast, humans employ the mevalonate (MVA) pathway for the production of IDP and DMADP, rendering proteins in the MEP pathway appealing targets for antimicrobial agents. This pathway consists of seven consecutive enzymatic reactions, of which 4-diphosphocytidyl-2C-methyl-D-erythritol synthase (IspD) and 2C-methyl-D-erythritol 2,4-cyclodiphosphate synthase (IspF) catalyze the third and fifth steps, respectively. In this study, we characterized the enzymatic activities and protein structures of Helicobacter pylori IspDF and Acinetobacter baumannii IspD. Then, using the direct interaction-based thermal shift assay, we conducted a compound screening of an approved drug library and identified 27 hit compounds potentially binding to AbIspD. Among them, two natural products, rosmarinic acid and tanshinone IIA sodium sulfonate, exhibited inhibitory activities against HpIspDF and AbIspD, by competing with one of the substrates, MEP. Moreover, tanshinone IIA sodium sulfonate also demonstrated certain antibacterial effects against H. pylori. In summary, we identified two IspD inhibitors from approved ingredients, broadening the scope for antibiotic discovery targeting the MEP pathway.
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