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Fermentation and purification strategies for the production of betulinic acid and its lupane-type precursors in Saccharomyces cerevisiae

机译:在酿酒酵母中生产桦木酸及其lupane型前体的发酵和纯化策略

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摘要

Microbial production of plant derived, biologically active compounds has the potential to provide economic and ecologic alternatives to existing low productive, plant-based processes. Current production of the pharmacologically active cyclic triterpenoid betulinic acid is realized by extraction from the bark of plane tree or birch. Here, we reengineered the reported betulinic acid pathway into S. cerevisiae and used this novel strain to develop efficient fermentation and product purification methods. Fed-batch cultivations with ethanol excess, using either an ethanol-pulse feed or controlling a constant ethanol concentration in the fermentation medium, significantly enhanced production of betulinic acid and its triterpenoid precursors. The beneficial effect of excess ethanol was further exploited in nitrogen-limited resting cell fermentations, yielding betulinic acid concentrations of 182 mg/L and total triterpenoid concentrations of 854 mg/L, the highest concentrations reported so far. Purification of lupane-type triterpenoids with high selectivity and yield was achieved by solid-liquid extraction without prior cell disruption using polar aprotic solvents such as acetone or ethyl acetate and subsequent precipitation with strong acids This study highlights the potential of microbial production of plant derived triterpenoids in S. cerevisiae by combining metabolic and process engineering. This article is protected by copyright. All rights reserved.
机译:微生物生产植物衍生的生物活性化合物具有潜力,为现有的低产量植物基工艺提供经济和生态替代方案。当前的药理活性环状三萜类桦木酸的生产是通过从梧桐树皮或桦树皮中提取来实现的。在这里,我们将报道的桦木酸途径改造为酿酒酵母,并使用这种新型菌株开发了有效的发酵和产物纯化方法。使用乙醇脉冲饲料或控制发酵培养基中恒定的乙醇浓度,用过量的乙醇进行分批补料培养,可显着提高桦木酸及其三萜类前体的产量。过量乙醇的有益作用在氮限制的静息细胞发酵中得到了进一步的利用,产生的桦木酸浓度为182 mg / L,总三萜类化合物浓度为854 mg / L,是迄今为止报道的最高浓度。通过在不使用极性非质子传递溶剂(例如丙酮或乙酸乙酯)的情况下事先进行细胞破碎的固液萃取方法,实现了具有高选择性和高收率的羽扇豆型三萜类化合物的纯化,这项研究突出了微生物生产植物衍生的三萜类化合物的潜力在酿酒酵母中,通过代谢和工艺工程相结合。本文受版权保护。版权所有。

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