首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Analysis of Carotenoid Isomerase Activity in a Prototypical Carotenoid Cleavage Enzyme Apocarotenoid Oxygenase (ACO)
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Analysis of Carotenoid Isomerase Activity in a Prototypical Carotenoid Cleavage Enzyme Apocarotenoid Oxygenase (ACO)

机译:典型的类胡萝卜素裂解酶类胡萝卜素加氧酶(ACO)中的类胡萝卜素异构酶活性分析

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摘要

Carotenoid cleavage enzymes (CCEs) constitute a group of evolutionarily related proteins that metabolize a variety of carotenoid and non-carotenoid substrates. Typically, these enzymes utilize a non-heme iron center to oxidatively cleave a carbon-carbon double bond of a carotenoid substrate. Some members also isomerize specific double bonds in their substrates to yield cis-apocarotenoid products. The apocarotenoid oxygenase from Synechocystis has been hypothesized to represent one such member of this latter category of CCEs. Here, we developed a novel expression and purification protocol that enabled production of soluble, native ACO in quantities sufficient for high resolution structural and spectroscopic investigation of its catalytic mechanism. High performance liquid chromatography and Raman spectroscopy revealed that ACO exclusively formed all-trans products. We also found that linear polyoxyethylene detergents previously used for ACO crystallization strongly inhibited the apocarotenoid oxygenase activity of the enzyme. We crystallized the native enzyme in the absence of apocarotenoid substrate and found electron density in the active site that was similar in appearance to the density previously attributed to a di-cis-apocarotenoid intermediate. Our results clearly demonstrated that ACO is in fact a non-isomerizing member of the CCE family. These results indicate that careful selection of detergent is critical for the success of structural studies aimed at elucidating structures of CCE-carotenoid/retinoid complexes.
机译:类胡萝卜素裂解酶(CCE)构成一组与进化相关的蛋白质,可代谢各种类胡萝卜素和非类胡萝卜素底物。通常,这些酶利用非血红素铁中心氧化切割类胡萝卜素底物的碳-碳双键。一些成员还在其底物中使特定的双键异构化以产生顺式-阿片类胡萝卜素产物。假单胞藻的类胡萝卜素加氧酶已被假设代表了后者中CCEs的一个这样的成员。在这里,我们开发了一种新颖的表达和纯化方案,可生产数量足以用于高分辨率结构和光谱学研究其催化机理的可溶性天然ACO。高效液相色谱和拉曼光谱表明,ACO专门形成了全反式产物。我们还发现,以前用于ACO结晶的线性聚氧乙烯去污剂强烈抑制了该酶的类胡萝卜素加氧酶活性。我们在缺乏类胡萝卜素底物的情况下使天然酶结晶,发现活性位点中的电子密度与先前归因于双顺式-类胡萝卜素中间体的密度相似。我们的结果清楚地表明,ACO实际上是CCE家族的非异构成员。这些结果表明,仔细选择去污剂对于旨在阐明CCE-类胡萝卜素/类维生素A复合物结构的结构研究的成功至关重要。

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