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首页> 外文期刊>Angewandte Chemie >Pseudilins: Halogenated, Allosteric Inhibitors of the Non-Mevalonate Pathway Enzyme IspD
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Pseudilins: Halogenated, Allosteric Inhibitors of the Non-Mevalonate Pathway Enzyme IspD

机译:Pseudilins:非甲羟戊酸途径酶IspD的卤代变构抑制剂

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摘要

The enzymes of the non-mevalonate pathway for isoprenoid biosynthesis have been identified as attractive targets with novel modes of action for the development of herbicides for crop protection and agents against infectious diseases. This pathway is present in many pathogenic organisms and plants, but absent in mammals. By using high-throughput screening, we identified highly halogenated marine natural products, the pseudilins, to be inhibitors of the third enzyme, IspD, in the pathway. Their activity against the IspD enzymes from Arabidopsis thaliana and Plasmodium vivax was determined in photometric and NMR-based assays. Cocrystal structures revealed that pseudilins bind to an allosteric pocket by using both divalent metal ion coordination and halogen bonding. The allosteric mode of action for preventing cosubstrate (CTP) binding at the active site was elucidated. Pseudilins show herbicidal activity in plant assays and antiplasmodial activity in cell-based assays.
机译:异戊二烯类生物合成的非甲羟戊酸途径的酶已被鉴定为具有新颖作用方式的有吸引力的靶标,这些作用方式用于开发用于作物保护的除草剂和抗传染病剂。该途径存在于许多病原生物和植物中,而在哺乳动物中则不存在。通过使用高通量筛选,我们确定了高度卤化的海洋天然产物假单胞菌素是该途径中第三种酶IspD的抑制剂。在光度法和基于NMR的测定中确定了它们对拟南芥和间日疟原虫IspD酶的活性。共晶体结构揭示了假性尿素通过使用二价金属离子配位和卤素键合结合到变构口袋。阐明了在活性位点防止共底物(CTP)结合的别构作用模式。假单胞菌素在植物试验中显示除草活性,在基于细胞的试验中显示抗疟原虫活性。

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