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◆ Journal of Agricultural and Food Chemistry2026-05-27· Chemistry

Novel Insights into Quinoline-Based Oxime Ether Derivatives with <i>E</i> / <i>Z</i> Isomerization Possessing Antifungal Activity and Their Mechanism of Action

Jingsha Yang, Linli Yang, Wan Chen, Xinming Yang, Z Chen, Mei Li, Yuanyuan Wu, Zhouqing Long, Xiang Zhou, Heng Zhang, Hui Li, Zhenhua Li, Song Yang

原始摘要(英文原文)· Original abstract
Numerous bioactive oxime ethers are utilized as pharmaceuticals and agrochemicals. However, the correlations among C═N–O bond E / Z isomerization, biological activity, and molecular targets of such compounds remain poorly elucidated. Herein, we constructed 54 novel quinoline-based oxime ether derivatives and illustrated their differential target-binding behavior of E / Z -isomers toward the putative target cytochrome bc 1 . E -isomer A 23 exhibited the most potent activity against Colletotrichum sublineola with an EC 50 value of 0.68 μg/mL, markedly higher than that of its Z -isomer (4.12 μg/mL). It also exerted stronger inhibitory effects on cytochrome bc 1 with an IC 50 of 16.6 μg/mL relative to B 23 (26.9 μg/mL), which further disturbed mitochondrial function, thereby inducing ROS accumulation and cell membrane damage. A 23 showed high protective (86.9%) and curative (80.7%) effects with low toxicity. This study reveals great potential of novel quinoline oxime ethers for fungal control and provides a new perspective for understanding how molecular configuration differences influence biological activity.
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Novel Insights into Quinoline-Based Oxime Ether Derivatives with <i>E</i> / <i>Z</i> Isomerization Possessing Antifungal Activity and Their Mechanism of Action — 科研速览 Science Skim