| Literature DB >> 31535250 |
Weizhu Zeng1,2, Bingbing Xu1,2,3, Guocheng Du1,4, Jian Chen1,2,3, Jingwen Zhou5,6,7.
Abstract
L-DOPA is a key pharmaceutical agent for treating Parkinson's, and market demand has exploded due to the aging population. There are several challenges associated with the chemical synthesis of L-DOPA, including complicated operation, harsh conditions, and serious pollution. A biocatalysis route for L-DOPA production is promising, especially via a route catalyzed by tyrosine phenol lyase (TPL). In this study, using TPL derived from Erwinia herbicola (Eh-TPL), a mutant Eh-TPL was obtained by integrating enzyme evolution and high-throughput screening methods. L-DOPA production using recombinant Escherichia coli BL21 (DE3) cells harbouring mutant Eh-TPL was enhanced by 36.5% in shake flasks, and the temperature range and alkali resistance of the Eh-TPL mutant were promoted. Sequence analysis revealed two mutated amino acids in the mutant (S20C and N161S), which reduced the length of a hydrogen bond and generated new hydrogen bonds. Using a fed-batch mode for whole-cell catalysis in a 5 L bioreactor, the titre of L-DOPA reached 69.1 g L-1 with high productivity of 11.52 g L-1 h-1, demonstrating the great potential of Eh-TPL variants for industrial production of L-DOPA.Entities:
Keywords: Catalytic activity; Error-prone PCR; Fed-batch mode; High-throughput screening; Tyrosine phenol lyase
Year: 2019 PMID: 31535250 DOI: 10.1007/s10295-019-02237-8
Source DB: PubMed Journal: J Ind Microbiol Biotechnol ISSN: 1367-5435 Impact factor: 3.346