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A Dedicated Type II NADPH Dehydrogenase Performs the Penultimate Step in the Biosynthesis of Vitamin K1 in Synechocystis and Arabidopsis

机译:专用II型NADPH脱氢酶在综合症和拟南芥中对维生素K1的生物合成中的倒数第二步

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摘要

Mutation of Arabidopsis thaliana NAD(P)H DEHYDROGENASE C1 (NDC1; At5g08740) results in the accumulation of demethylphylloquinone, a late biosynthetic intermediate of vitamin K1. Gene coexpression and phylogenomics analyses showed that conserved functional associations occur between vitamin K biosynthesis and NDC1 homologs throughout the prokaryotic and eukaryotic lineages. Deletion of Synechocystis ndbB, which encodes for one such homolog, resulted in the same defects as those observed in the cyanobacterial demethylnaphthoquinone methyltransferase knockout. Chemical modeling and assay of purified demethylnaphthoquinone methyltransferase demonstrated that, by virtue of the strong electrophilic nature of S-adenosyl-Lmethionine, the transmethylation of the demethylated precursor of vitamin K is strictly dependent on the reduced form of its naphthoquinone ring. NDC1 was shown to catalyze such a prerequisite reduction by using NADPH and demethylphylloquinone as substrates and flavine adenine dinucleotide as a cofactor. NDC1 displayed Michaelis-Menten kinetics and was markedly inhibited by dicumarol, a competitive inhibitor of naphthoquinone oxidoreductases. These data demonstrate that the reduction of the demethylnaphthoquinone ring represents an authentic step in the biosynthetic pathway of vitamin K, that this reaction is enzymatically driven, and that a selection pressure is operating to retain type II NAD(P)H dehydrogenases in this process.
机译:拟南芥的突变肉质(P)H脱氢酶C1(NDC1; AT5G08740)导致去甲基丙酮的积累,维生素K1晚生物合成中间体。基因共表达和系统源分析表明,在整个原核和真核谱系中的维生素K生物合成和NDC1同源物之间发生了保守的功能联系。缺失对一个这样的同源物编码的SneCechocystis NDBB导致与在蓝藻脱甲基喹啉甲基转移酶敲除观察到相同的缺陷。纯化的去甲基喹啉甲基转移酶的化学建模和测定证明,借助于S-腺苷-1methionine的强型电泳性质,维生素K的去甲基化前体的酰基化含量严格依赖于其萘醌环的减少形式。显示NDC1通过使用NADPH和去甲基喹啉作为基质和黄酮腺嘌呤二核苷酸作为辅助球剂来催化这种先决条件。 NDC1显示Michaelis-Menten动力学,并通过Dicumarol,萘醌氧化酶的竞争性抑制剂显着抑制。这些数据表明,去甲基喹啉环的还原代表了维生素K的生物合成途径中的真实步骤,即该反应被酶促驱动,并且选择压力在该方法中保持II型NAD(P)H脱氢酶。

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