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新型茚氨基酸衍生物作为琥珀酸脱氢酶抑制剂的设计、合成及生物活性评价

Design, Synthesis, and Bioactivity Evaluation of Novel Indene Amino Acid Derivatives as Succinate Dehydrogenase Inhibitors.

作者信息

Zhang Letian, Chen Yadi, Wu Wende, Li Zhong, Xu Xiaoyong

机构信息

Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology, Shanghai 200237, China.

出版信息

J Agric Food Chem. 2025 Apr 30;73(17):10130-10143. doi: 10.1021/acs.jafc.5c00009. Epub 2025 Apr 21.

DOI:10.1021/acs.jafc.5c00009
PMID:40257934
Abstract

Succinate dehydrogenase inhibitors (SDHIs) represent one of the three predominant fungicide categories in contemporary agricultural markets, garnering an increasing level of research interest. Building upon our prior work utilizing aminocyclobutanecarboxylic acid as a linker, we designed and synthesized a novel series of indene amino acid derivatives to optimize hydrophobic interactions with the SDH enzyme. These derivatives demonstrated potent in vitro antifungal activity against , , and , with compound exhibiting efficacy comparable to boscalid against all three pathogens. Structure-activity relationship analysis coupled with 3D-QSAR modeling revealed significant enzymatic inhibition enhancement, particularly in compound , which showed a 7.4-fold improvement in porcine heart SDH inhibition (IC = 0.5026 μM) versus the parent structure (IC = 3.7257 μM). Lipophilicity mapping and molecular docking simulations attribute this enhancement to indene fragment-induced optimization of hydrophobic pocket interactions. Scanning electron microscopy revealed analogous mycelial deformation patterns between -treated and fluxapyroxad-treated samples. Complementary DFT calculations and molecular electrostatic potential analysis further corroborated the proposed binding mode, establishing this indene amino acid scaffold as a promising lead structure for next-generation SDHI development.

摘要

琥珀酸脱氢酶抑制剂(SDHIs)是当代农业市场上三种主要的杀菌剂类别之一,正受到越来越多的研究关注。基于我们之前以氨基环丁烷羧酸作为连接基的工作,我们设计并合成了一系列新型茚氨基酸衍生物,以优化与SDH酶的疏水相互作用。这些衍生物对[此处原文缺失具体菌种名称]、[此处原文缺失具体菌种名称]和[此处原文缺失具体菌种名称]表现出强大的体外抗真菌活性,化合物[此处原文缺失化合物编号]对所有三种病原体的疗效与啶酰菌胺相当。构效关系分析与3D-QSAR建模显示酶抑制作用显著增强,特别是在化合物[此处原文缺失化合物编号]中,其对猪心SDH的抑制作用(IC = 0.5026 μM)相较于母体结构(IC = 3.7257 μM)提高了7.4倍。亲脂性图谱和分子对接模拟将这种增强归因于茚片段诱导的疏水口袋相互作用的优化。扫描电子显微镜显示[此处原文缺失处理剂名称]处理的样品和氟唑菌酰胺处理的样品之间菌丝体变形模式相似。互补的DFT计算和分子静电势分析进一步证实了所提出的结合模式,确立了这种茚氨基酸支架作为下一代SDHI开发的有前景的先导结构。

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