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Cell-Free Production of Pentacyclic Triterpenoid Compound Betulinic Acid from Betulin by the Engineered Saccharomyces cerevisiae

机译:工程酿酒酵母从无糖蛋白中无细胞生产五环三萜类化合物抗酸蛋白

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Betulinic acid is a product of plant secondary metabolism which has shown various bioactivities. Several CYP716A subfamily genes were recently characterized encoding multifunctional oxidases capable of C-28 oxidation. CYP716A12 was identified as betulin C-28 oxidase, capable of modifying betulin. This study aimed to induce the transformation of betulin to betulinic acid by co-expressing enzymes CYP716A12 from Medicago truncatula and ATR1 from Arabidopsis thaliana in Saccharomyces cerevisiae. The microsome protein extracted from the transgenic yeast successfully catalyzed the transformation of betulin to betulinic acid. We also characterized the optimization of cell fragmentation, protein extraction method, and the conversion conditions. Response surface methodology was implemented, and the optimal yield of betulinic acid reached 18.70%. After optimization, the yield and the conversion rate of betulin were increased by 83.97% and 136.39%, respectively. These results may present insights and strategies for the sustainable production of betulinic acid in multifarious transgenic microbes. View Full-Text
机译:桦木酸是植物二次代谢的产物,已显示出多种生物活性。最近鉴定了几个CYP716A亚家族基因,它们编码能够进行C-28氧化的多功能氧化酶。 CYP716A12被鉴定为betulin C-28氧化酶,能够修饰betulin。这项研究的目的是通过在啤酒酵母中共表达来自Medi藜苜蓿的酶CYP716A12和来自拟南芥的ATR1来诱导桦木素向桦木酸的转化。从转基因酵母中提取的微粒体蛋白成功催化了桦木蛋白向桦木酸的转化。我们还表征了细胞破碎,蛋白质提取方法和转化条件的优化。实施了响应面分析法,桦木酸的最佳收率达到了18.70%。优化后,甜菜碱的得率和转化率分别提高了83.97%和136.39%。这些结果可能为在多种转基因微生物中可持续生产桦木酸提供了见识和策略。查看全文

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