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New Mandelalides Expand a Macrolide Series of Mitochondria! Inhibitors

机译:新的Mandelalides扩大了Mitochondria的大环解系列! 抑制剂

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Mandelalides A-D (1-4) are macrocyclic polyketides known to have an unusual bioactivity profile influenced by compound glycosylation and growth phase of cultured cells. The isolation and characterization of additional natural congeners, mandelalides E-L (5-12), and the supply of synthetic compounds 1 and 12, as well as seco-mandelalide A methyl ester (13), have now facilitated mechanism of action and structure activity relationship studies. Glycosylated mandelalides are effective inhibitors of aerobic respiration in living cells. Macrolides 1 and 2 inhibit mitochondrial function similar to oligomycin A and apoptolidin A, selective inhibitors of the mammalian ATP synthase (complex V). 1 inhibits ATP synthase activity from isolated mitochondria and triggers caspase-dependent apoptosis in HeLa cells, which are more sensitive to inhibition by 1 in the presence of the glycolysis inhibitor 2-deoxyglucose. Thus, mandelalide cytotoxicity depends on basal metabolic phenotype; cells with an oxidative phenotype are most likely to be inhibited by the mandelalides.
机译:Mendelalides A-D(1-4)是已知具有受复合糖基化和培养细胞生长阶段的异常生物活性曲线的大环聚酯。额外的天然同胞,MENDELALESEL(5-12)的分离和表征,以及合成化合物1和12的供应,以及SECO-MENDELALALE甲酯(13),现在具有促进的作用和结构活性关系机制学习。糖基化的meandelalides是活细胞中有氧呼吸的有效抑制剂。大胶质剂1和2抑制与哺乳动物ATP合酶A和Apoptolidin A,选择性抑制剂相似的线粒体函数(复合V)。 1抑制来自分离的线粒体的ATP合成酶活性,并在Hela细胞中触发Caspase依赖性凋亡,在糖酵解抑制剂2-脱氧葡萄糖的存在下对抑制更敏感。因此,MeNcellalide细胞毒性取决于基础代谢表型;具有氧化表型的细胞最有可能被曼德莱甲醛抑制。

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