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Efficient D-threitol production by an engineered strain of Yarrowia lipolytica overexpressing xylitol dehydrogenase gene from Scheffersomyces stipitis

机译:通过夏西氏菌氏症的yarrowia Lipolytica的工程菌株的工程菌株提供高效的D-Threitol生产来自什菲氏菌氏症的木糖醇脱氢酶基因

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摘要

D-threitol (hereinafter as threitol) is a diastereoisomer of erythritol with wider applications in green chemistry, food, pharmaceutical, and medicine. Herein, xylitol dehydrogenase from Scheffersomyces stipitis CBS 6054 was demonstrated able to catalyze highly efficient threitol formation from erythritol with erythrulose as an intermediate. When the corresponding gene Ss-XDH was overexpressed in the erythritol-producing Yarrowia lipolytica strain CGMCC7326, threitol was produced with a titer of 112 g.L-1 and yield of 0.37 from glucose. Unexpectedly, gene encoding mannitol dehydrogenase was upregulated in the threitol producing stain, leading to mannitol accumulation in the culture broth. In order to eliminate this byproduct and coproduced erythritol, a second process step based on the culture of Candida parapsilosis was developed to facilitate subsequent threitol purification. This is the first report to efficiently biosynthesize threitol from glucose through the fermentation process by an engineered Y. lipolytica and wild-type Candida parapsilosis.
机译:D-Threitol(以下称为Threitol)是赤藓糖醇的非对映异构体,具有更广泛的绿色化学,食品,制药和药物应用。在此,Scheffersomyces智能肝钠肝6054的木糖醇脱氢酶能够用赤藓糖溶解作为中间体的赤藓糖醇催化高效的血糖形成。当相应的基因SS-XDH在赤藓糖醇产生的氧化钇脂肪醇酵母菌菌株CGMCC7326中过表达时,用112g1-1的滴度和葡萄糖产生0.37的产率。出乎意料地,在产生染色体的茎酚溶液中升高了编码甘露醇脱氢酶的基因,导致培养液中的甘露醇积累。为了消除这种副产物和副产季齐酚,开发了一种基于念珠菌甲状腺素培养的第二种方法步骤,以促进随后的血液纯化。这是第一份通过工程化Y.Pilytica和野生型念珠菌病程有效地通过发酵过程能够从葡萄糖中获得血糖素的报告。

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