抗真菌
吲哚试验
化学
生物碱
吲哚生物碱
生物化学
脚手架
结构-活动关系
药物发现
立体化学
细胞色素
行动方式
化学合成
细胞色素P450
组合化学
生物
对接(动物)
磺胺
海洋真菌
铅化合物
分子模型
抗真菌药
生物活性
抗真菌药
新陈代谢
作者
Yan Wang,J. Liu,Feng‐Lei Duan,Gizachew Mulugeta Manahelohe,Qiang Sha,O. Sukhbaatar,Xiao Feng,Qiang Bian,Yu‐Cheng Gu,Ming‐Zhi Zhang
摘要
Abstract BACKGROUND Streptochlorin, a marine indole alkaloid with broad‐spectrum bioactivity, has been structurally modified by introducing sulfonamide at the 3‐position of the indole scaffold to enhance its antifungal potential. RESULTS A series of sulfonamide‐containing derivatives were designed, synthesized, and evaluated against seven phytopathogenic fungi. Notably, derivatives D35 – D37 exhibited potent antifungal activity, demonstrating >60% inhibition against most tested fungi and > 85% efficacy against Valsa mali . Structure–activity relationship (SAR) analysis revealed that 3‐phenylsulfonamide substitution conferred optimal activity. Molecular docking studies suggested that these derivatives likely targeted the cytochrome bc 1 complex, implicating fungal respiration disruption as a potential mode of action. CONCLUSION The 3‐phenylsulfonamide‐modified streptochlorin derivatives exhibited potent antifungal activity, with D35 ‐ D37 showing particular efficacy. Their successful synthesis offers a novel antifungal scaffold, while preliminary studies suggest potential cytochrome bc 1 complex inhibition as a mode of action. © 2026 Society of Chemical Industry.
科研通智能强力驱动
Strongly Powered by AbleSci AI