Channeling in native microbial pathways: Implications and challenges for metabolic engineering
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November 2017 |
Comparative studies of glycolytic pathways and channeling under in vitro and in vivo modes
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September 2018 |
Quinolinic acid: A precursor to nicotinamide adenine dinucleotide in Escherichiacoli
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July 1963 |
Gas Phase Catalytic Oxidation of β-Picoline to Nicotinic Acid: Catalysts, Mechanism and Reaction Kinetics
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July 2012 |
From zero to hero—Design-based systems metabolic engineering of Corynebacterium glutamicum for l-lysine production
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March 2011 |
Absolute metabolite concentrations and implied enzyme active site occupancy in Escherichia coli
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June 2009 |
A thermostable L-aspartate oxidase: a new tool for biotechnological applications
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January 2013 |
Structure of FAD-Bound l -Aspartate Oxidase: Insight into Substrate Specificity and Catalysis † , ‡
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March 2002 |
Delineation of Type I Protein Kinase A-selective Signaling Events Using an RI Anchoring Disruptor
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July 2006 |
Cloning, Overexpression, and Purification of Escherichia coli Quinolinate Synthetase
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February 2000 |
De Novo Biosynthesis of Nicotinamide Adenine Dinucleotide in Escherichia coli : Excretion of Quinolinic Acid by Mutants Lacking Quinolinate Phosphoribosyl Transferase
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July 1972 |
Mutation of the ptsG Gene Results in Increased Production of Succinate in Fermentation of Glucose by Escherichia coli
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January 2001 |
The Crystal Structure of Fe 4 S 4 Quinolinate Synthase Unravels an Enzymatic Dehydration Mechanism That Uses Tyrosine and a Hydrolase-Type Triad
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February 2014 |
Escherichia coli Quinolinate Synthetase Does Indeed Harbor a [4Fe-4S] Cluster
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May 2005 |
Engineering the spatial organization of metabolic enzymes: mimicking nature's synergy
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October 2008 |
Development of a metabolic network design and optimization framework incorporating implementation constraints: A succinate production case study
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January 2006 |
The importance of recognizing pellagra (niacin deficiency) as it still occurs
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June 2014 |
One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products
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May 2000 |
Replacement of the glucose phosphotransferase transport system by galactose permease reduces acetate accumulation and improves process performance of Escherichia coli for recombinant protein production without impairment of growth rate
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May 2006 |
Characterization of the Acetate-Producing Pathways in Escherichia coli
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January 2005 |
Structure of Quinolinate Synthase from Pyrococcus horikoshii in the Presence of Its Product, Quinolinic Acid
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June 2016 |
Molecular biology of pyridine nucleotide biosynthesis in Escherichia coli. Cloning and characterization of quinolinate synthesis genes nadA and nadB
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August 1988 |
Molecular Basis of AKAP Specificity for PKA Regulatory Subunits
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November 2006 |
Studies on the de novo Biosynthesis of NAD in Escherichia coli. The Separation of the nadB Gene Product from the nadA Gene Product and Its Purification
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May 1975 |
Lipoamide dehydrogenase mutants of Escherichia coli K 12
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November 1972 |
Nutritional Neuropathies
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May 2013 |
Finding metabolic pathways using atom tracking
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April 2010 |
Multigene Editing in the Escherichia coli Genome via the CRISPR-Cas9 System
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January 2015 |
Modular enzyme assembly for enhanced cascade biocatalysis and metabolic flux
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September 2019 |
Manufacturing Molecules Through Metabolic Engineering
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December 2010 |
Improving the organization and interactivity of metabolic pathfinding with precomputed pathways
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January 2020 |
Systems metabolic engineering of microorganisms for natural and non-natural chemicals
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May 2012 |
Cloning, expression, characterisation and mutational analysis of l-aspartate oxidase from Pseudomonas putida
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January 2013 |
Effect of lpdA gene knockout on the metabolism in Escherichia coli based on enzyme activities, intracellular metabolite concentrations and metabolic flux analysis by 13C-labeling experiments
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March 2006 |
Comparison of individual component deletions in a glucose-specific phosphotransferase system revealed their different applications
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August 2015 |
Metabolic engineering of aerobic succinate production systems in Escherichia coli to improve process productivity and achieve the maximum theoretical succinate yield
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March 2005 |
Characterization of l-aspartate oxidase and quinolinate synthase from Bacillus subtilis: NadA and NadB from B. subtilis
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September 2008 |
High yield production of four-carbon dicarboxylic acids by metabolically engineered Escherichia coli
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January 2018 |
Structure ofL-aspartate oxidase: implications for the succinate dehydrogenase/fumarate reductase oxidoreductase family
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July 1999 |
L-Aspartate Oxidase from Escherichia coli. I. Characterization of Coenzyme Binding and Product Inhibition
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July 1996 |
L-Aspartate oxidase, a newly discovered enzyme of Escherichia coli, is the B protein of quinolinate synthetase.
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January 1982 |
Pathway construction and metabolic engineering for fermentative production of ectoine in Escherichia coli
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July 2016 |
Quinolinate synthetase, an iron-sulfur enzyme in NAD biosynthesis
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June 2005 |
Aerobic and anaerobic NAD + metabolism in Saccharomyces cerevisiae
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March 2002 |
Metabolic pathways and fermentative production of L-aspartate family amino acids
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June 2010 |
Alpha-keto acid dehydrogenase complexes. 8. Comparison of dihydrolipoyl dehydrogenases from pyruvate and alpha-ketoglutarate dehydrogenase complexes of Escherichia coli.
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September 1967 |
Dual Activity of Quinolinate Synthase: Triose Phosphate Isomerase and Dehydration Activities Play Together To Form Quinolinate
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October 2015 |
Structure of l-aspartate oxidase from the hyperthermophilic archaeon Sulfolobus tokodaii
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March 2008 |
Novel pathway engineering design of the anaerobic central metabolic pathway in Escherichia coli to increase succinate yield and productivity
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May 2005 |
The PEP—pyruvate—oxaloacetate node as the switch point for carbon flux distribution in bacteria: We dedicate this paper to Rudolf K. Thauer, Director of the Max-Planck-Institute for Terrestrial Microbiology in Marburg, Germany, on the occasion of his 65th birthday
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September 2005 |
Expression of the E. coli nadB Gene and Characterization of the Gene Product L-Aspartate Oxidase
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January 1990 |
Quantitative estimation of channeling from early glycolytic intermediates to CO2 in intact Escherichia coli: Quantitation of channeling in intact E. coli
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June 2005 |
Vapor-phase oxidation of 3-picoline to nicotinic acid over Cr1−xAlxVO4 catalysts
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January 2003 |
The lpd gene product functions as the L protein in the Escherichia coli glycine cleavage enzyme system
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October 1990 |
On the catalytic role of the active site residue E121 of E. coli l-aspartate oxidase
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October 2010 |
Heterologous pyc gene expression under various natural and engineered promoters in Escherichia coli for improved succinate production
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September 2011 |
Site-directed mutagenesis of the phosphorylatable serine (Ser8) in C4 phosphoenolpyruvate carboxylase from sorghum. The effect of negative charge at position 8.
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October 1992 |
Substrate channelling as an approach to cascade reactions
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March 2016 |
Reduction of acetate accumulation in Escherichia coli cultures for increased recombinant protein production
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March 2008 |
Metabolic Engineering: Past and Future
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June 2013 |
Expression regulation of multiple key genes to improve l-threonine in Escherichia coli
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February 2020 |
Improved succinate production from galactose‐rich feedstocks by engineered Escherichia coli under anaerobic conditions
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January 2020 |
Metabolic engineering of Escherichia coli to produce succinate from soybean hydrolysate under anaerobic conditions
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March 2018 |