首页> 外文期刊>The Journal of biological chemistry >The Lycopene Cyclase CrtY from Pantoea ananatis (Formerly Erwinia uredovora) Catalyzes an FADred-dependent Non-redox Reaction
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The Lycopene Cyclase CrtY from Pantoea ananatis (Formerly Erwinia uredovora) Catalyzes an FADred-dependent Non-redox Reaction

机译:Pantoea Ananatis(以前Erwinia Uredovora)的番茄红素环氯蕊花环克致依赖于依赖性的非氧化还原反应

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The cyclization of lycopene generates provitamin A carotenoids such as β-carotene and paves the way toward the formation of cyclic xanthophylls playing distinct roles in photosynthesis and as precursors for regulatory molecules in plants and animals. The biochemistry of lycopene cyclization has been enigmatic, as the previously proposed acid-base catalysis conflicted with the possibility of redox catalysis as predicted by the presence of a dinucleotide binding site. We show that reduced FAD is the essential lycopene cyclase (CrtY) cofactor. Using flavin analogs, mass spectrometry, and mutagenesis, evidence was obtained based on which a catalytic mechanism relying on cryptic (net) electron transfer can be refuted. The role of reduced FAD is proposed to reside in the stabilization of a transition state carrying a (partial) positive charge or of a positively charged intermediate via a charge transfer interaction, acid-base catalysis serving as the underlying catalytic principle. Lycopene cyclase, thus, ranks among the novel class of non-redox flavoproteins, such as isopentenyl diphosphate:dimethylallyl diphosphate isomerase type 2 (IDI-2) that requires the reduced form of the cofactor.
机译:番茄红素的环化产生了肽的类胡萝卜素,如β-胡萝卜素,并朝着在光合作用中形成不同作用的环状叶片和作为植物和动物的调节分子的前体铺平的方式。番茄红素环化的生物化学已经神秘,因为先前提出的酸碱催化与氧化还原催化的可能性冲突,如通过二核苷酸结合位点的存在预测的。我们表明,减少的FAD是必需的番茄红素环酶(CRTY)Cofactor。使用Flavin类似物,质谱和诱变,基于该证据基于该证据,基于该证据基于该证据,依赖于依赖于隐秘(净)电子转移的催化机制。提出了减少的FAD的作用,以稳定携带(部分)正电荷或通过电荷转移相互作用,酸碱催化原理的酸碱催化剂的过渡状态稳定。因此,番茄红素环酶在新颖的非氧化还原类黄蛋白等类别中排名,例如异戊烷基二磷酸酯:二甲基二磷酸二磷酸二磷酸异构酶型2(IDI-2),其需要减少辅因子的形式。

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