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Highly selective synthesis of d-amino acids from readily available l-amino acids by a one-pot biocatalytic stereoinversion cascade

机译:通过单盆生物催化立体级级级级钙高度选择性地合成来自易于可用的L-氨基酸的D-氨基酸

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摘要

d-Amino acids are key intermediates required for the synthesis of important pharmaceuticals. However, establishing a universal enzymatic method for the general synthesis of d-amino acids from cheap and readily available precursors with few by-products is challenging. In this study, we constructed and optimized a cascade enzymatic route involving l-amino acid deaminase and d-amino acid dehydrogenase for the biocatalytic stereoinversions of l-amino acids into d-amino acids. Using l-phenylalanine (l-Phe) as a model substrate, this artificial biocatalytic cascade stereoinversion route first deaminates l-Phe to phenylpyruvic acid (PPA) through catalysis involving recombinant Escherichia coli cells that express l-amino acid deaminase from Proteus mirabilis (PmLAAD), followed by stereoselective reductive amination with recombinant meso-diaminopimelate dehydrogenase from Symbiobacterium thermophilum (StDAPDH) to produce d-phenylalanine (d-Phe). By incorporating a formate dehydrogenase-based NADPH-recycling system, d-Phe was obtained in quantitative yield with an enantiomeric excess greater than 99%. In addition, the cascade reaction system was also used to stereoinvert a variety of aromatic and aliphatic l-amino acids to the corresponding d-amino acids by combining the PmLAAD whole-cell biocatalyst with the StDAPDH variant. Hence, this method represents a concise and efficient route for the asymmetric synthesis of d-amino acids from the corresponding l-amino acids.
机译:D-氨基酸是合成重要药物所需的关键中间体。然而,建立一种普遍合成来自廉价和容易获得的副体的D-氨基酸的通用酶法是挑战性的。在这项研究中,我们构建和优化了伴随L-氨基酸脱氨基酶和D-氨基酸脱氢酶的级联酶促途径,用于将L-氨基酸的生物催化立体化酶变成D-氨基酸。使用L-苯丙氨酸(L-PHE)作为模型底物,通过催化致表达来自Proteus mirabilis的重组大肠杆菌细胞的催化剂,将这种人工生物催化级联立体化立体转化术首先将L-PHE脱去L-Phe至苯基吡咯酸(PPA)。 ),然后用来自Symbibigophirum(STDAPDH)的重组中甲二氨酸脱氢酶的立体选择性还原胺化,得到D-苯丙氨酸(D-PHE)。通过掺入甲酸脱氢酶的NADPH再循环系统,以定量产率获得D-PHE,对映体过量超过99%。此外,通过将PMLAAD全细胞生物催化剂与STDAPDH变体组合,还使用级联反应系统通过将PMLAAD全细胞生物催化剂组合来立体化到相应的D-氨基酸上。因此,该方法代表了来自相应的L-氨基酸的不对称合成的D-氨基酸的简明和有效的途径。

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    《RSC Advances》 |2019年第51期|共9页
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  • 正文语种 eng
  • 中图分类 化学;
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