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首页> 外文期刊>The Journal of biological chemistry >Dioxygenases Catalyze O-Demethylation and O,O-Demethylenation with Widespread Roles in Benzylisoquinoline Alkaloid Metabolism in Opium Poppy
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Dioxygenases Catalyze O-Demethylation and O,O-Demethylenation with Widespread Roles in Benzylisoquinoline Alkaloid Metabolism in Opium Poppy

机译:二氧化基金酶催化O-去甲基化和O,O-Demethylation在鸦片罂粟中的苄基异喹啉生物碱代谢中具有广泛的作用

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摘要

In opium poppy, the antepenultimate and final steps in morphine biosynthesis are catalyzed by the 2-oxoglutarate/Fe(II)-dependent dioxygenases, thebaine 6-O-demethylase (T6ODM) and codeine O-demethylase (CODM). Further investigation into the biochemical functions of CODM and T6ODM revealed extensive and unexpected roles for such enzymes in the metabolism of protopine, benzo[c]phenanthridine, and rhoeadine alkaloids. When assayed with a wide range of benzylisoquinoline alkaloids, CODM, T6ODM, and the functionally unassigned paralog DIOX2, renamed protopine O-dealkylase, showed novel and efficient dealkylation activities, including regio- and substrate-specific O-demethylation and O,O-demethylenation. Enzymes catalyzing O,O-demethylenation, which cleave a methylenedioxy bridge leaving two hydroxyl groups, have previously not been reported in plants. Similar cleavage of methylenedioxy bridges on substituted amphetamines is catalyzed by heme-dependent cytochromes P450 in mammals. Preferred substrates for O,O-demethylenation by CODM and protopine O-dealkylase were protopine alkaloids that serve as intermediates in the biosynthesis of benzo[c]phenanthridine and rhoeadine derivatives. Virus-induced gene silencing used to suppress the abundance of CODM and/or T6ODM transcripts indicated a direct physiological role for these enzymes in the metabolism of protopine alkaloids, and they revealed their indirect involvement in the formation of the antimicrobial benzo[c]phenanthridine sanguinarine and certain rhoeadine alkaloids in opium poppy.
机译:在罂粟中,吗啡生物合成中的抗血合和最终步骤由2-氧代氟盐酸盐/ Fe(II) - 依赖性二氧化基团,TheBaine 6-O-脱甲基化酶(T6odm)和可待因O-脱甲基酶(CODM)催化。进一步调查CODM的生化功能和T6odm的生物化学功能揭示了对苯并[C]菲利对苯吖啶和Rhoeahine生物碱的代谢中所述酶的广泛和意外的作用。当用各种苄基异喹啉生物碱进行测定时,根据促使促突卵酸碱的副蛋白酶蛋白酶和功能未分配的伞菌DIOx2,表现出新颖的和有效的脱康化活性,包括学节和基质特异性O-去甲基化和O,O-DEMethylation 。在植物中,先前没有报道,在植物中携带留下亚甲基二氧基桥的酶催化O,O-Demethylation。在哺乳动物中血红素依赖性细胞变色剂P450催化取代的亚苯胺的亚甲基氧化桥的类似裂解。通过CODM和PRODOPINE O-Dealkylase的O,O-Demethynation的优选底物是普罗基因生物碱,其用作Benzo [C]菲尼丁和Rhoeahine衍生物的生物合成中间体。用于抑制CODM和/或T6ODM转录物的富裕的病毒诱导的基因沉默表明了这些酶在普罗葛林生物碱的代谢中的直接生理作用,并且它们揭示了它们在形成抗菌苯并[C]藻素的形成中的间接参与和某些Rhoeadine生物碱在罂粟中。

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