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Characterization of two Vitis vinifera carotenoid cleavage dioxygenases by heterologous expression in Saccharomyces cerevisiae

机译:异源表达酿酒酵母中异源表达的两种血管伏苦替氏菌类胡萝卜素裂解二恶英酶的表征

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Norisoprenoids are produced from carotenoids under oxidative degradation mediated by carotenoid cleavage dioxygenases (CCDs) and contribute to floral and fruity notes in grape berries and wine. The diversity of CCD substrates and products has been demonstrated by in vitro recombinant proteins extracted from Escherichia coli expressing CCD genes and of in vivo proteins in an E. coli system co-expressing genes for carotenoid synthesis and cleavage. In the current study, VvCCD1 and VvCCD4b were isolated from the cDNA library of Vitis vinifera L. cv. Cabernet Sauvignon and then transformed into carotenoid-accumulating recombinant Saccharomyces cerevisiae strains. The expression of the target genes was monitored during the yeast growth period, and the accumulation of carotenoids and norisoprenoids in the recombinant strains was measured. The results indicated that both of the VvCCDs cleaved beta-carotene at the 7, 8 (7 ', 8 ') position into beta-cyclocitral for the first time. Additionally, the two enzymes also degraded beta-carotene at the 9, 10 (9 ', 10 ') position to generate beta-ionone and cleaved lycopene at the 5, 6 (5 ', 6 ') position into 6-methyl-5-hepten-2-one. These findings suggested that the VvCCDs may possess more cleavage characteristics under the eukaryotic expression system in S. cerevisiae than the prokaryotic system in E. coli, which could better explain the biochemical functions of VvCCDs in grape berries.
机译:在由类胡萝卜素切割二氧化基金酶(CCD)介导的氧化降解下由类胡萝卜素产生的胡同胚胎产生,并有助于葡萄浆果和葡萄酒中的花卉和果味。通过表达CCD基因的大肠杆菌和体内蛋白质中提取的体外重组蛋白和在大肠杆菌系统中的体内蛋白质中的体内蛋白质中的组织基因的组织合成和切割中的体内蛋白质,已经证明了CCD基质和产品的多样性。在目前的研究中,VVCCD1和VVCCD4B从血管血管血管膜的cDNA文库中分离。赤霞珠和随后转化为类胡萝卜素积累的重组酿酒酵母菌菌株。在酵母生长期间监测靶基因的表达,并测量在重组菌株中的类胡萝卜素和诺异戊二烯的积累。结果表明,这两种VVCCDS在7,8(7',8')位置的第一次将β-胡萝卜素切割成β-环核瘤。另外,两种酶在9,10(9',10')位置也降解了β-胡萝卜素,以产生β-离子团,并在5,6(5',6')位置裂解番茄红素,进入6-甲基-5 - -2-一。这些发现表明,VVCCDS在酿酒酵母的真核表达系统中可能比大肠杆菌中的原核系统具有更多的裂解特征,这可以更好地解释VVCCDS在葡萄浆果中的生物化学功能。

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