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首页> 外文期刊>Applied biochemistry and microbiology >Enzymatic synthesis of L-tryptophan from D,L-2-amino-Delta 2-thiazoline-4-carboxylic acid and indole by Pseudomonas sp TS1138 L-2-amino-Delta 2-thiazoline-4-carboxylic acid hydrolase, S-carbamyl-L-cysteine amidohydrolase and Escherichia coli L-tryptophanase
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Enzymatic synthesis of L-tryptophan from D,L-2-amino-Delta 2-thiazoline-4-carboxylic acid and indole by Pseudomonas sp TS1138 L-2-amino-Delta 2-thiazoline-4-carboxylic acid hydrolase, S-carbamyl-L-cysteine amidohydrolase and Escherichia coli L-tryptophanase

机译:酶合成来自D,L-2-氨基 - δ2-噻唑啉-4-羧酸的L-色氨酸,Pseudomonass SP TS1138 L-2-氨基 - δ2-噻唑啉-4-羧酸水解酶,S-甲酰基 -L-半胱氨酸酰胺水溶胶酶和大肠杆菌L-色氨酸酶

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摘要

L-Tryptophan (L-Trp) is an essential amino acid. It is widely used in medical, health and food products, so a low-cost supply is needed. There are 4 methods for L-Trp production: chemical synthesis, extraction, enzymatic synthesis, and fermentation. In this study, we produced a recombinant bacterial strain pET-tnaA of Escherichia coli which has the L-tryptophanase gene. Using the pET-tnaA E. coli and the strain TS1138 of Pseudomonas sp., a one-pot enzymatic synthesis of L-Trp was developed. Pseudomonas sp. TS1138 was added to a solution of D,L-2-amino-Delta 2-thiazoline-4-carboxylic acid (DL-ATC) to convert it to L-cysteine (L-Cys). After concentration, E. coli BL21 (DE 3) cells including plasmid pET-tnaA, indole, and pyridoxal 5'-phosphate were added. At the optimum conditions, the conversion rates of DL-ATC and L-Cys were 95.4% and 92.1%, respectively. After purifying using macroporous resin S8 and NKA-II, 10.32 g of L-Trp of 98.3% purity was obtained. This study established methods for one-pot enzymatic synthesis and separation of L-Trp. This method of producing L-Trp is more environmentally sound than methods using chemical synthesis, and it lays the foundations for industrial production of L-Trp from dl-ATC and indole.
机译:L-色氨酸(L-TRP)是必不可少的氨基酸。它广泛用于医疗,健康和食品,因此需要低成本供应。 L-TRP生产有4种方法:化学合成,提取,酶合成和发酵。在这项研究中,我们制备了具有L-色氨酸酶基因的大肠杆菌的重组细菌菌株PET-TNAA。使用pseudomonas sp的PET-TNAA大肠杆菌和菌株TS1138。,开发了L-TRP的一锅酶合成。 Pseudomonas sp。将TS1138加入到D,L-2-氨基 - δ2-噻唑啉-4-羧酸(DL-ATC)的溶液中,以将其转化为L-半胱氨酸(L-Cys)。加入浓缩后,加入包括质粒PET-TNAA,吲哚和吡哆醛5'-磷酸质粒的大肠杆菌BL21(DE 3)细胞。在最佳条件下,DL-ATC和L-CYS的转化率分别为95.4%和92.1%。使用大孔树脂S8和NKA-II纯化后,得到10.32g L-TRP为98.3%纯度。本研究建立了一种酶酶合成和L-TRP分离的方法。这种生产L-TRP的方法比使用化学合成的方法更具环保性,并且它为来自DL-ATC和Indole的L-TRP的工业生产基础。

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    College of Pharmacy and Tianjin Key Laboratory of Molecular Drug Research Nankai University 300071 Tianjin China;

    College of Pharmacy and Tianjin Key Laboratory of Molecular Drug Research Nankai University 300071 Tianjin China;

    College of Pharmacy and Tianjin Key Laboratory of Molecular Drug Research Nankai University 300071 Tianjin China;

    College of Pharmacy and Tianjin Key Laboratory of Molecular Drug Research Nankai University 300071 Tianjin China;

    College of Bioengineering Tianjin University of Science and Technology Tianjin 300457 China;

    College of Pharmacy and Tianjin Key Laboratory of Molecular Drug Research Nankai University 300071 Tianjin China;

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  • 正文语种 eng
  • 中图分类 微生物学;
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