P-糖蛋白
烟曲霉
曲霉
糖蛋白
生物
微生物学
立体化学
计算生物学
化学
生物化学
抗生素
多重耐药
作者
Teng Cai,Nanjin Ding,Weiguang Sun,Jingzu Sun,Haohua Zhu,Qiang He,Baosong Chen,Peng Zhang,Hanli Ruan,Hongwei Liu,Yonghui Zhang,Xiaofeng Cai
标识
DOI:10.1021/acs.jnatprod.5c00766
摘要
Multidrug resistance (MDR) remains a significant challenge in cancer chemotherapy. Seeking novel MDR modulators, we employed a molecular networking (MN)-guided strategy to explore the endophytic fungus Aspergillus templicola . This led to the targeted isolation of an unprecedented cyclotetrapeptide, templicolamide A ( 1, featuring a rare β-enamino acid), and four piperazine derivatives ( 2 – 5 ), including the new helvamide E ( 2 ) with a unique bicyclic scaffold. The structures were elucidated through extensive spectroscopic analysis and comparison with literature data, with the absolute configuration of compound 1 further confirmed by advanced Marfey’s method and ECD calculations and that of compound 2 confirmed by single-crystal X-ray diffraction. All isolates were evaluated for their antipaclitaxel (PTX) resistance activity in P -glycoprotein (P-gp)-overexpressing tumor cell lines. Notably, the piperazine derivatives, particularly compound 3 (a known structure), exhibited potent MDR reversal. Mechanistic studies demonstrated that 3 reversed MDR primarily through direct binding to P-gp and inhibiting its efflux function, without affecting its expression. In vivo, the PTX + 3 combination achieved effective tumor regression and apoptosis in a xenograft model with no observable toxicity. Our findings broaden the structural diversity of fungal MDR modulators and underscore the potential of specific nontoxic piperazine scaffolds as promising anti-MDR therapeutic leads.
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