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Biosynthesis of 4-hydroxyphenylpyruvic acid from l-tyrosine using recombinant Escherichia coli cells expressing membrane bound l-amino acid deaminase

Chinese Journal of Chemical Engineering. 2017; 
HUANRU DING, WEIRUI ZHAO, CHANGJIANG LU¨ , JUN HUANG, SHENGHU, SHANJING YAO, LEHE MEI, JINBO WAN
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Gene Synthesis … 2.2. l-AAD Plasmids construction and transformation. The ml-AAD gene from Proteus vulgaris (GenBank accession no. AB030003.1) with addition of BamH I and Xho I restriction sites at the forward and reverse ends respectively was synthesized by GenScript Biotech Co … Get A Quote

Abstract

: 4-Hydroxyphenylpyruvic acid (4-HPPA), a kind of α-keto acid, is an intermediate in the metabolism of tyrosine and has a wide range of application in food, pharmaceutical and chemical industry. Using amino acids as raw material to produce the corresponding α-keto acid is thought to be both economic and efficient. Among the enzymes that convert amino acid to α-keto acid, membrane bound L-amino acid deaminase (mL-AAD), which is anchored to the outer side of the cytomembrane, become an ideal enzyme to prepare α-keto acid since there is no cofactors needed and H2O2 production during the reaction. In this study, the mL-AAD from Proteus vulgaris was used to prepare whole-cell catalysts to produce 4-HPPA f... More

Keywords

4-hydroxyphenylpyruvic acid, L-tyrosine, membrane-bound L-amino acid deaminases,biocatalysis, molecular biology, biological engineering