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On the Structure and Function of the Phytoene Desaturase CRTI from Pantoea ananatis, a Membrane-Peripheral and FAD-Dependent Oxidase/Isomerase

机译:关于Pantoea ananatis植保体去饱和酶CRTI的结构和功能,膜-外围和FAD依赖的氧化酶/异构酶。

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摘要

CRTI-type phytoene desaturases prevailing in bacteria and fungi can form lycopene directly from phytoene while plants employ two distinct desaturases and two cis-tans isomerases for the same purpose. This property renders CRTI a valuable gene to engineer provitamin A-formation to help combat vitamin A malnutrition, such as with Golden Rice. To understand the biochemical processes involved, recombinant CRTI was produced and obtained in homogeneous form that shows high enzymatic activity with the lipophilic substrate phytoene contained in phosphatidyl-choline (PC) liposome membranes. The first crystal structure of apo-CRTI reveals that CRTI belongs to the flavoprotein superfamily comprising protoporphyrinogen IX oxidoreductase and monoamine oxidase. CRTI is a membrane-peripheral oxidoreductase which utilizes FAD as the sole redox-active cofactor. Oxygen, replaceable by quinones in its absence, is needed as the terminal electron acceptor. FAD, besides its catalytic role also displays a structural function by enabling the formation of enzymatically active CRTI membrane associates. Under anaerobic conditions the enzyme can act as a carotene cis-trans isomerase. In silico-docking experiments yielded information on substrate binding sites, potential catalytic residues and is in favor of single half-site recognition of the symmetrical C40 hydrocarbon substrate.
机译:细菌和真菌中普遍存在的CRTI型八氢番茄红素去饱和酶可以直接从八氢番茄红素形成番茄红素,而植物出于相同的目的使用两种不同的去饱和酶和两种顺式棕褐色异构酶。此特性使CRTI成为工程化维生素原A形成以对抗维生素A营养不良的有价值基因,例如与金大米一起使用。为了理解所涉及的生化过程,生产并获得了均一形式的重组CRTI,该重组CRTI与磷脂酰胆碱(PC)脂质体膜中所含的亲脂底物八氢番茄红素具有很高的酶促活性。 apo-CRTI的第一个晶体结构表明CRTI属于黄素蛋白超家族,包含原卟啉原IX氧化还原酶和单胺氧化酶。 CRTI是一种膜外围氧化还原酶,它利用FAD作为唯一的氧化还原活性辅因子。需要氧,在不存在的情况下可被醌取代,作为末端电子受体。 FAD除了具有催化作用外,还可以通过形成酶促活性CRTI膜缔合物来显示结构功能。在厌氧条件下,该酶可以充当胡萝卜素顺反异构酶。在计算机对接实验中获得了有关底物结合位点,潜在的催化残基的信息,并且有利于对称C40烃底物的单个半位点识别。

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