Guo Lirong, Wang Hexiang, Zheng Fuqiang, Xu Shiyu, Liu Fang, Huang Wenbo, Zhang Zhigang, Wang Kaimei, Cao Xiufang, Bao Longzhu, Ke Shaoyong
Key Lab of Microbial Pesticides (Ministry of Agriculture and Rural Affairs), National Biopesticide Engineering Research Centre, Hubei Biopesticide Engineering Research Centre, Hubei Academy of Agricultural Sciences, Wuhan 430064, China.
College of Chemistry, Huazhong Agricultural University, Wuhan 430070, China.
J Agric Food Chem. 2025 Jun 4;73(22):13283-13294. doi: 10.1021/acs.jafc.4c12584. Epub 2025 May 23.
The exploration of natural products as lead scaffolds continues to serve as a valuable strategy for the development of novel antifungal agents. In this investigation, we focused on the natural furanoid compound 2-heptyl-5-hexylfuran-3-carboxylic acid (HHCA) and designed and synthesized four distinct series of multisubstituted furan carboxylic acid derivatives. Comprehensive structural characterization and biological evaluation were performed for all 48 compounds. In vitro antifungal screening against eight prevalent plant pathogens revealed that some of these derivatives exhibited significant inhibitory effects against and . Structure-activity relationship analysis demonstrated that peptide-containing derivatives showed superior antifungal potency compared with their hydrazide, amide, and ester counterparts. The most promising candidate compound was further evaluated for its in vivo efficacy against two plant pathogens, and , indicating potent antifungal activity with EC values of 17.14 μg/mL and 19.63 μg/mL, respectively. Notably, these values were significantly lower than those of the natural product HHCA with an enhanced antifungal potency. These findings highlight the practical potential of compound as a novel antifungal agent for agricultural applications. Mechanistic investigations employing microscopic analysis, molecular docking simulations, and density functional theory (DFT) calculations provided insights into the putative mode of action of , particularly regarding its interaction with succinate dehydrogenase (SDH). These findings establish a foundation for the rational development of HHCA-derived furan derivatives as novel SDH-targeting fungicidal agents.
探索天然产物作为先导骨架仍然是开发新型抗真菌剂的一种有价值的策略。在本研究中,我们聚焦于天然呋喃类化合物2-庚基-5-己基呋喃-3-羧酸(HHCA),并设计合成了四个不同系列的多取代呋喃羧酸衍生物。对所有48种化合物进行了全面的结构表征和生物学评价。针对八种常见植物病原体的体外抗真菌筛选表明,其中一些衍生物对 和 表现出显著的抑制作用。构效关系分析表明,含肽衍生物与其酰肼、酰胺和酯类对应物相比显示出更高的抗真菌效力。对最有前景的候选化合物 进一步评估了其对两种植物病原体 和 的体内疗效,结果表明其具有强效抗真菌活性,EC值分别为17.14 μg/mL和19.63 μg/mL。值得注意的是,这些值显著低于天然产物HHCA,且抗真菌效力增强。这些发现突出了化合物 作为一种新型农用抗真菌剂的实际潜力。采用显微镜分析、分子对接模拟和密度泛函理论(DFT)计算的机理研究为 可能的作用模式提供了见解,特别是关于其与琥珀酸脱氢酶(SDH)的相互作用。这些发现为合理开发源自HHCA的呋喃衍生物作为新型靶向SDH的杀真菌剂奠定了基础。