Abstract Background Production of l-tyrosine is gaining grounds as the market size of 3,4-dihydroxyphenyl-l-alanine (l-DOPA) is expected to increase due to increasing cases of Parkinson’s disease a neurodegenerative disease. Attempts to overproduce l-tyrosine for conversion to l-DOPA has stemmed on the overexpressing of critical pathway enzymes, an introduction of feedback-resistant enzymes, and deregulation of transcriptional regulators. Results An E. coli BL21 (DE3) was engineered by deleting tyrR, ptsG, crr, pheA and pykF while directing carbon flow through the overexpressing of galP and glk. TktA and PpsA were also overexpressed to enhance the accumulation of E4P and PEP. Directed evolution was then applied on HpaB to optimize its activ...
Increased carbon flow directed into the common pathway of aromatic amino acid biosynthesis does not ...
Viral vector-mediated gene transfer is emerging as a novel therapeutic approach with clinical utilit...
Schwentner A, Feith A, Muench E, et al. Metabolic engineering to guide evolution - Creating a novel ...
<p>L-Tyrosine which is one of the terminal metabolites of highly regulated aromatic amino-acid biosy...
An increase in the number of elderly people suffering from the symptoms of Parkinson's disease is le...
MasterL-tyrosine is a commercially important compound in the food, pharmaceutical, chemical, and cos...
3,4-dihydroxyphenyl-L-alanine (L-DOPA) is a preferred drug for Parkinson’s disease, with an increasi...
A thermostable tyrosine phenol-lyase gene of a thermophilic Symbiobacterium species was cloned and o...
Abstract Dopamine is high-value compound of pharmaceutical interest, but its industrial scale produc...
<p>L-Dopa and dopamine are important pathway intermediates toward the synthesis of catecholamine suc...
Abstract Background The six-carbon circular non-proteinogenic compound l-pipecolic acid is an import...
Despite wide applications of L-tyrosine in the market, microbial overproduction of L-tyrosine has be...
Viral vector-mediated gene transfer is emerging as a novel therapeutic approach with clinical utilit...
Key factors for high production performance in biosynthetic process include continuous supply of red...
The Author(s) 2014. This article is published with open access at Springerlink.com Abstract 3,4-Dihy...
Increased carbon flow directed into the common pathway of aromatic amino acid biosynthesis does not ...
Viral vector-mediated gene transfer is emerging as a novel therapeutic approach with clinical utilit...
Schwentner A, Feith A, Muench E, et al. Metabolic engineering to guide evolution - Creating a novel ...
<p>L-Tyrosine which is one of the terminal metabolites of highly regulated aromatic amino-acid biosy...
An increase in the number of elderly people suffering from the symptoms of Parkinson's disease is le...
MasterL-tyrosine is a commercially important compound in the food, pharmaceutical, chemical, and cos...
3,4-dihydroxyphenyl-L-alanine (L-DOPA) is a preferred drug for Parkinson’s disease, with an increasi...
A thermostable tyrosine phenol-lyase gene of a thermophilic Symbiobacterium species was cloned and o...
Abstract Dopamine is high-value compound of pharmaceutical interest, but its industrial scale produc...
<p>L-Dopa and dopamine are important pathway intermediates toward the synthesis of catecholamine suc...
Abstract Background The six-carbon circular non-proteinogenic compound l-pipecolic acid is an import...
Despite wide applications of L-tyrosine in the market, microbial overproduction of L-tyrosine has be...
Viral vector-mediated gene transfer is emerging as a novel therapeutic approach with clinical utilit...
Key factors for high production performance in biosynthetic process include continuous supply of red...
The Author(s) 2014. This article is published with open access at Springerlink.com Abstract 3,4-Dihy...
Increased carbon flow directed into the common pathway of aromatic amino acid biosynthesis does not ...
Viral vector-mediated gene transfer is emerging as a novel therapeutic approach with clinical utilit...
Schwentner A, Feith A, Muench E, et al. Metabolic engineering to guide evolution - Creating a novel ...