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Novel Carotenoid Oxidase Involved in Biosynthesis of 4,4′-Diapolycopene Dialdehyde

机译:新型类胡萝卜素氧化酶参与4,4'-双聚番茄红素二醛的生物合成

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Biosynthesis of C30 carotenoids is relatively restricted in nature but has been described in Staphylococcus and in methylotrophic bacteria. We report here identification of a novel gene (crtNb) involved in conversion of 4,4′-diapolycopene to 4,4′-diapolycopene aldehyde. An aldehyde dehydrogenase gene (ald) responsible for the subsequent oxidation of 4,4′-diapolycopene aldehyde to 4,4′-diapolycopene acid was also identified in Methylomonas. CrtNb has significant sequence homology with diapophytoene desaturases (CrtN). However, data from knockout of crtNb and expression of crtNb in Escherichia coli indicated that CrtNb is not a desaturase but rather a novel carotenoid oxidase catalyzing oxidation of the terminal methyl group(s) of 4,4′-diaponeurosporene and 4,4′-diapolycopene to the corresponding terminal aldehyde. It has moderate to low activity on neurosporene and lycopene and no activity on β-carotene or ζ-carotene. Using a combination of C30 carotenoid synthesis genes from Staphylococcus and Methylomonas, 4,4′-diapolycopene dialdehyde was produced in E. coli as the predominant carotenoid. This C30 dialdehyde is a dark-reddish purple pigment that may have potential uses in foods and cosmetics.
机译:C30类胡萝卜素的生物合成在自然界相对较受限制,但已在葡萄球菌和甲基营养菌中进行了描述。我们在这里报告鉴定涉及一个新的基因(crtNb)的4,4'-双聚番茄红素向4,4'-双聚番茄红素醛的转化。在甲基单胞菌中还鉴定出醛脱氢酶基因(ald),其负责随后将4,4'-双聚番茄红素醛氧化为4,4'-双聚番茄红酸。 CrtNb与泛二烯脱饱和酶(CrtN)具有显着的序列同源性。然而,来自敲除crtNb和表达crtNb在大肠杆菌中的数据表明,CrtNb不是去饱和酶,而是一种新型的类胡萝卜素氧化酶,可催化4,4'-diaponeurosporene和4,4'-的末端甲基的氧化。双聚番茄红素对应的末端醛。它对神经孢子和番茄红素具有中等至低的活性,对β-胡萝卜素或ζ-胡萝卜素没有活性。使用来自葡萄球菌和甲基单胞菌的C30类胡萝卜素合成基因的组合,在大肠杆菌中产生了4,4'-双聚二烯二醛作为主要类胡萝卜素。这种C30二醛是深红色的紫色颜料,可能在食品和化妆品中有潜在用途。

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