Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids
Wendisch VF, Bott M, Eikmanns BJ (2006)
Current Opinion in Microbiology 9(3): 268-274.
Zeitschriftenaufsatz
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Autor*in
Wendisch, Volker F.UniBi ;
Bott, M.;
Eikmanns, B. J.
Einrichtung
Abstract / Bemerkung
Industrial microorganisms have been developed as biocatalysts to provide new or to optimize existing processes for the biotechnological production of chemicals from renewable plant biomass. Rational strain development by metabolic engineering is crucial to successful processes, and is based on efficient genetic tools and detailed knowledge of metabolic pathways and their regulation. This review summarizes recent advances in metabolic engineering of the industrial model bacteria Escherichia coli and Corynebacterium glutamicum that led to efficient recombinant biocatalysts for the production of acetate, pyruvate, ethanol, D- and L-lactate, succinate, L-lysine and L-serine.
Stichworte
fermentation;
fed-batch;
pyruvate-carboxylase;
succinic acid;
dehydrogenase;
l-lactic acid;
oxygen-deprivation conditions;
fuel ethanol-production;
lactate;
lysine
Erscheinungsjahr
2006
Zeitschriftentitel
Current Opinion in Microbiology
Band
9
Ausgabe
3
Seite(n)
268-274
ISSN
1369-5274
Page URI
https://pub.uni-bielefeld.de/record/1895359
Zitieren
Wendisch VF, Bott M, Eikmanns BJ. Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids. Current Opinion in Microbiology. 2006;9(3):268-274.
Wendisch, V. F., Bott, M., & Eikmanns, B. J. (2006). Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids. Current Opinion in Microbiology, 9(3), 268-274. https://doi.org/10.1016/j.mib.2006.03.001
Wendisch, Volker F., Bott, M., and Eikmanns, B. J. 2006. “Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids”. Current Opinion in Microbiology 9 (3): 268-274.
Wendisch, V. F., Bott, M., and Eikmanns, B. J. (2006). Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids. Current Opinion in Microbiology 9, 268-274.
Wendisch, V.F., Bott, M., & Eikmanns, B.J., 2006. Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids. Current Opinion in Microbiology, 9(3), p 268-274.
V.F. Wendisch, M. Bott, and B.J. Eikmanns, “Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids”, Current Opinion in Microbiology, vol. 9, 2006, pp. 268-274.
Wendisch, V.F., Bott, M., Eikmanns, B.J.: Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids. Current Opinion in Microbiology. 9, 268-274 (2006).
Wendisch, Volker F., Bott, M., and Eikmanns, B. J. “Metabolic engineering of Escherichia coli and Corynebacterium glutamicum for biotechnological production of organic acids and amino acids”. Current Opinion in Microbiology 9.3 (2006): 268-274.
Daten bereitgestellt von European Bioinformatics Institute (EBI)
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PMID: 16332763
Lee SJ, Lee DY, Kim TY, Kim BH, Lee J, Lee SY., Appl. Environ. Microbiol. 71(12), 2005
PMID: 16332763
Effect of Sorghum vulgare phosphoenolpyruvate carboxylase and Lactococcus lactis pyruvate carboxylase coexpression on succinate production in mutant strains of Escherichia coli.
Lin H, San KY, Bennett GN., Appl. Microbiol. Biotechnol. 67(4), 2004
PMID: 15565333
Lin H, San KY, Bennett GN., Appl. Microbiol. Biotechnol. 67(4), 2004
PMID: 15565333
Efficient succinic acid production from glucose through overexpression of pyruvate carboxylase in an Escherichia coli alcohol dehydrogenase and lactate dehydrogenase mutant.
Sanchez AM, Bennett GN, San KY., Biotechnol. Prog. 21(2), 2005
PMID: 15801771
Sanchez AM, Bennett GN, San KY., Biotechnol. Prog. 21(2), 2005
PMID: 15801771
Novel pathway engineering design of the anaerobic central metabolic pathway in Escherichia coli to increase succinate yield and productivity.
Sanchez AM, Bennett GN, San KY., Metab. Eng. 7(3), 2005
PMID: 15885621
Sanchez AM, Bennett GN, San KY., Metab. Eng. 7(3), 2005
PMID: 15885621
Genetic reconstruction of the aerobic central metabolism in Escherichia coli for the absolute aerobic production of succinate.
Lin H, Bennett GN, San KY., Biotechnol. Bioeng. 89(2), 2005
PMID: 15543598
Lin H, Bennett GN, San KY., Biotechnol. Bioeng. 89(2), 2005
PMID: 15543598
Metabolic engineering of aerobic succinate production systems in Escherichia coli to improve process productivity and achieve the maximum theoretical succinate yield.
Lin H, Bennett GN, San KY., Metab. Eng. 7(2), 2005
PMID: 15781420
Lin H, Bennett GN, San KY., Metab. Eng. 7(2), 2005
PMID: 15781420
Fed-batch culture of a metabolically engineered Escherichia coli strain designed for high-level succinate production and yield under aerobic conditions.
Lin H, Bennett GN, San KY., Biotechnol. Bioeng. 90(6), 2005
PMID: 15803467
Lin H, Bennett GN, San KY., Biotechnol. Bioeng. 90(6), 2005
PMID: 15803467
The respiratory chain of Corynebacterium glutamicum.
Bott M, Niebisch A., J. Biotechnol. 104(1-3), 2003
PMID: 12948635
Bott M, Niebisch A., J. Biotechnol. 104(1-3), 2003
PMID: 12948635
Metabolic analysis of Corynebacterium glutamicum during lactate and succinate productions under oxygen deprivation conditions.
Inui M, Murakami S, Okino S, Kawaguchi H, Vertes AA, Yukawa H., J. Mol. Microbiol. Biotechnol. 7(4), 2004
PMID: 15383716
Inui M, Murakami S, Okino S, Kawaguchi H, Vertes AA, Yukawa H., J. Mol. Microbiol. Biotechnol. 7(4), 2004
PMID: 15383716
A novel methodology employing Corynebacterium glutamicum genome information to generate a new L-lysine-producing mutant.
Ohnishi J, Mitsuhashi S, Hayashi M, Ando S, Yokoi H, Ochiai K, Ikeda M., Appl. Microbiol. Biotechnol. 58(2), 2002
PMID: 11876415
Ohnishi J, Mitsuhashi S, Hayashi M, Ando S, Yokoi H, Ochiai K, Ikeda M., Appl. Microbiol. Biotechnol. 58(2), 2002
PMID: 11876415
A novel gnd mutation leading to increased L-lysine production in Corynebacterium glutamicum.
Ohnishi J, Katahira R, Mitsuhashi S, Kakita S, Ikeda M., FEMS Microbiol. Lett. 242(2), 2005
PMID: 15621447
Ohnishi J, Katahira R, Mitsuhashi S, Kakita S, Ikeda M., FEMS Microbiol. Lett. 242(2), 2005
PMID: 15621447
Lysine and glutamate production by Corynebacterium glutamicum on glucose, fructose and sucrose: roles of malic enzyme and fructose-1,6-bisphosphatase.
Georgi T, Rittmann D, Wendisch VF., Metab. Eng. 7(4), 2005
PMID: 15979917
Georgi T, Rittmann D, Wendisch VF., Metab. Eng. 7(4), 2005
PMID: 15979917
Studies on the utilization of lactose by Corynebacterium glutamicum, bearing the lactose operon of Escherichia coli.
Brabetz W, Liebl W, Schleifer KH., Arch. Microbiol. 155(6), 1991
PMID: 1953301
Brabetz W, Liebl W, Schleifer KH., Arch. Microbiol. 155(6), 1991
PMID: 1953301
Heterologous expression of lactose- and galactose-utilizing pathways from lactic acid bacteria in Corynebacterium glutamicum for production of lysine in whey.
Barrett E, Stanton C, Zelder O, Fitzgerald G, Ross RP., Appl. Environ. Microbiol. 70(5), 2004
PMID: 15128544
Barrett E, Stanton C, Zelder O, Fitzgerald G, Ross RP., Appl. Environ. Microbiol. 70(5), 2004
PMID: 15128544
Utilization of soluble starch by a recombinant Corynebacterium glutamicum strain: growth and lysine production.
Seibold G, Auchter M, Berens S, Kalinowski J, Eikmanns BJ., J. Biotechnol. 124(2), 2006
PMID: 16488498
Seibold G, Auchter M, Berens S, Kalinowski J, Eikmanns BJ., J. Biotechnol. 124(2), 2006
PMID: 16488498
Cometabolism of a nongrowth substrate: L-serine utilization by Corynebacterium glutamicum.
Netzer R, Peters-Wendisch P, Eggeling L, Sahm H., Appl. Environ. Microbiol. 70(12), 2004
PMID: 15574911
Netzer R, Peters-Wendisch P, Eggeling L, Sahm H., Appl. Environ. Microbiol. 70(12), 2004
PMID: 15574911
Metabolic engineering of Corynebacterium glutamicum for L-serine production.
Peters-Wendisch P, Stolz M, Etterich H, Kennerknecht N, Sahm H, Eggeling L., Appl. Environ. Microbiol. 71(11), 2005
PMID: 16269752
Peters-Wendisch P, Stolz M, Etterich H, Kennerknecht N, Sahm H, Eggeling L., Appl. Environ. Microbiol. 71(11), 2005
PMID: 16269752
Metabolic engineering for the microbial production of 1,3-propanediol.
Nakamura CE, Whited GM., Curr. Opin. Biotechnol. 14(5), 2003
PMID: 14580573
Nakamura CE, Whited GM., Curr. Opin. Biotechnol. 14(5), 2003
PMID: 14580573
New tool for metabolic pathway engineering in Escherichia coli: one-step method to modulate expression of chromosomal genes.
Meynial-Salles I, Cervin MA, Soucaille P., Appl. Environ. Microbiol. 71(4), 2005
PMID: 15812048
Meynial-Salles I, Cervin MA, Soucaille P., Appl. Environ. Microbiol. 71(4), 2005
PMID: 15812048
Manipulating corynebacteria, from individual genes to chromosomes.
Vertes AA, Inui M, Yukawa H., Appl. Environ. Microbiol. 71(12), 2005
PMID: 16332735
Vertes AA, Inui M, Yukawa H., Appl. Environ. Microbiol. 71(12), 2005
PMID: 16332735
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