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首页> 外文期刊>Journal of Agricultural and Food Chemistry >One-Pot Synthesis of Phenylglyoxylic Acid from Racemic Mandelic Acids via Cascade Biocatalysis
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One-Pot Synthesis of Phenylglyoxylic Acid from Racemic Mandelic Acids via Cascade Biocatalysis

机译:通过级联生物分析从外消旋蛋白酸苯基乙二醇的合成

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Phenylglyoxylic acid (PGA) are key building blocks and widely used to synthesize pharmaceutical intermediates or food additives. However, the existing synthetic methods for PGA generally involve toxic cyanide and complex processes. To explore an alternative method for PGA biosynthesis, we envisaged cascade biocatalysis for the one-pot synthesis of PGA from racemic mandelic acid. A novel mandelate racemase named ArMR showing higher expression level (216.9 U.mL(-1) fermentation liquor) was cloned from Agrobacterium radiobacter and identified, and six recombinant Escherichia coli strains were engineered to coexpress three enzymes of mandelate racemase, D-mandelate dehydrogenase and L-lactate dehydrogenase, and transform racemic mandelic acid to PGA. Among them, the recombinant E. coli TCD 04, engineered to coexpress three enzymes of ArMR, LhDMDH, and LhLDH, can transform racemic mandelic acid (100 mM) to PGA with 98% conversion. Taken together, we provide a green approach for one-pot biosynthesis of PGA from racemic mandelic acid.
机译:苯基乙醇酸(PGA)是关键构建块,广泛用于合成药物中间体或食品添加剂。然而,PGA的现有合成方法通常涉及有毒的氰化物和复杂的方法。为了探讨PGA生物合成的替代方法,我们设想了从外消旋仙人掌酸的单盆合成PGA的级联生物催化分析。从农杆菌放射杆菌克隆并鉴定出来的新的牙髓外壳酶,显示出显示出更高的表达水平(216.9 U.ML(-1个)发酵液),并设计了六种重组大肠杆菌菌株以共同施用三种牙胶状酶,D-扁桃体脱氢酶的三种酶和L-乳酸脱氢酶,并将外消旋仙妮酸转化为PGA。其中,重组大肠杆菌TCD 04,工程化以共同缩写ARMR,LHDMDH和LHLDH的三种酶,可以将外消旋仙人掌(100mM)转化为PGA,转化为98%。一起服用,我们为来自外胶酸的PGA的一锅生物合成提供了一种绿色方法。

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