Design, synthesis, antibacterial evaluation of isopropylamine linked with different substituted phenol and piperazine novel derivatives

Author:

Wang Wen‐Hang1,Li Zhu‐Rui1,Zhu Dan‐Xue1,Chen Jia‐Yi1,Zhou Yue1,Li Cheng‐Peng1,Shao Li‐Hui12,Qiu Xue‐Mei1,Zhu Mei12,Long Hai‐Tao13,Chen Dan‐Ping13,Ouyang Gui‐Ping12,Rong Zi‐Qiang4,Wang Zhen‐Chao123ORCID

Affiliation:

1. College of Pharmacy Guizhou University Guiyang People's Republic of China

2. National Key Laboratory of Green Pesticide, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education Center for R&D of Fine Chemicals of Guizhou University Guiyang People's Republic of China

3. Guizhou Engineering Laboratory for Synthetic Drugs Guizhou University Guiyang People's Republic of China

4. Frontiers Science Center for Flexible Electronics (FSCFE), Shaanxi Institute of Flexible Electronics (SIFE) & Shaanxi Institute of Biomedical Materials and Engineering (SIBME) Northwestern Polytechnical University (NPU) Xi'an People's Republic of China

Abstract

AbstractBACKGROUNDXanthomonas oryzae pv. oryzae (Xoo) is often considered one of the most destructive bacterial pathogens causing bacterial leaf blight (BLB), resulting in significant yield and cost losses in rice. In this study, a series of novel derivatives containing the isopropanolamine moiety linked to various substituted phenols and piperazines were designed, synthesized and screened.RESULTSAntibacterial activity results showed that most compounds had good inhibitory effects on Xoo, among which compound W2 (EC50 = 2.74 μg mL−1) exhibited the most excellent inhibitory activity, and W2 also had a certain curative effect (35.89%) on rice compared to thiodiazole copper (TC) (21.57%). Scanning electron microscopy (SEM) results indicated that compound W2 could cause rupture of the Xoo cell membrane. Subsequently, proteomics and quantitative real‐time polymerase chain reaction revealed that compound W2 affected the physiological processes of Xoo and may exert antibacterial activity by targeting the two‐component system pathway. Interestingly, W2 upregulated Xoo's methyltransferase to impact on its pathogenicity.CONCLUSIONThe present study offers a promising phenolic‐piperazine‐sopropanolamine compound as an innovative antibacterial strategy by specifically targeting the two‐component system pathway and inducing upregulation of methyltransferase to effectively impact Xoo's pathogenicity. © 2024 Society of Chemical Industry.

Publisher

Wiley

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