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首页> 外文期刊>FEMS Yeast Research >Yeast pyruvate decarboxylases: variation in biocatalytic characteristics for (R)-phenylacetylcarbinol production
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Yeast pyruvate decarboxylases: variation in biocatalytic characteristics for (R)-phenylacetylcarbinol production

机译:酵母丙酮酸脱羧酶:(R)-苯基乙酰甲醇生产生物催化特性的变化

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摘要

Based on previous studies, Candida utilis pyruvate decarboxylase (PDC) proved to be a stable and high productivity enzyme for the production (R)-phenylacetylcarbinol (PAC), a pharmaceutical precursor. However, a portion of the substrate pyruvate was lost to by-product formation. To identify a source of PDC which might overcome this problem, strains of four yeasts -- C. utilis, Candida tropicalis, Saccharomyces cerevisiae and Kluyveromyces marxianus -- were investigated for their PDC biocatalytic properties. Biotransformations were conducted with benzaldehyde and pyruvate as substrates and three experimental systems were employed (in the order of increasing benzaldehyde concentrations): (I) aqueous (soluble benzaldehyde), (II) aqueous/benzaldehyde emulsion, and (III) aqueous/octanol-benzaldehyde emulsion. Although C. utilis PDC resulted in the highest concentrations of PAC and was the most stable enzyme, C. tropicalis PDC was associated with the lowest acetoin formation. For example, in system (III) the ratio of PAC over acetoin was 35 g g(-1) for C. tropicalis PDC and 9.2 g g(-1) for C. utilis PDC. The study thereby opens up the potential to design a PDC with both high productivity and high yield characteristics.
机译:根据以前的研究,药假丝酵母丙酮酸脱羧酶(PDC)被证明是生产(R)-苯基乙酰基甲醇(PAC)(一种药物前体)的稳定且高生产率的酶。但是,一部分丙酮酸底物因副产物形成而损失。为了确定可能克服此问题的PDC来源,研究了四种酵母菌株-util鱼,热带假丝酵母,酿酒酵母和马克斯克鲁维酵母-的PDC生物催化特性。以苯甲醛和丙酮酸为底物进行生物转化,并使用三个实验系统(以苯甲醛浓度增加的顺序):( I)水性(可溶性苯甲醛),(II)水性/苯甲醛乳液和(III)水性/辛醇-苯甲醛乳液。尽管util。C. utilis PDC导致PAC浓度最高,并且是最稳定的酶,但是C.tropicis PDC与最低的乙醛生成量有关。例如,在系统(III)中,对于热带假单胞菌PDC,PAC对乙酰丙酮的比率为35 g g-1(-1),对于utilis PDC为9.2 g g-1(-1)。因此,这项研究为设计具有高生产率和高良率特性的PDC开辟了潜力。

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