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Metabolic engineering of lactic acid bacteria for the production of industrially important compounds
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title
Metabolic engineering of lactic acid bacteria for the production of industrially important compounds
(English)
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PubMed
main subject
metabolic engineering
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lactic acid bacteria
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author name string
Maria Papagianni
series ordinal
1
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language of work or name
English
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publication date
2012
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published in
Computational and Structural Biotechnology Journal
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volume
3
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page(s)
e201210003
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cites work
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Fine tuning of the lactate and diacetyl production through promoter engineering in Lactococcus lactis
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Recent advances in engineering the central carbon metabolism of industrially important bacteria
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28 September 2017
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28 September 2017
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High-level production of the low-calorie sugar sorbitol by Lactobacillus plantarum through metabolic engineering
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Overproduction of heterologous mannitol 1-phosphatase: a key factor for engineering mannitol production by Lactococcus lactis
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High-level acetaldehyde production in Lactococcus lactis by metabolic engineering
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Microbial export of lactic and 3-hydroxypropanoic acid: implications for industrial fermentation processes
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Riboflavin production in Lactococcus lactis: potential for in situ production of vitamin-enriched foods
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Transformation of folate-consuming Lactobacillus gasseri into a folate producer
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28 September 2017
Engineering Lactococcus lactis for production of mannitol: high yields from food-grade strains deficient in lactate dehydrogenase and the mannitol transport system
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28 September 2017
Engineering metabolic highways in Lactococci and other lactic acid bacteria
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28 September 2017
Increased production of folate by metabolic engineering of Lactococcus lactis
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28 September 2017
Exopolysaccharides from lactic acid bacteria: perspectives and challenges
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28 September 2017
Metabolic pathway engineering in lactic acid bacteria
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PubMed Central
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28 September 2017
Effect of different NADH oxidase levels on glucose metabolism by Lactococcus lactis: kinetics of intracellular metabolite pools determined by in vivo nuclear magnetic resonance
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28 September 2017
Metabolic engineering of acetaldehyde production by Streptococcus thermophilus
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28 September 2017
Metabolic engineering of lactic acid bacteria for the production of nutraceuticals
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28 September 2017
The biotechnological production of sorbitol
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PubMed Central
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28 September 2017
Enhanced exopolysaccharide production by metabolic engineering of Streptococcus thermophilus
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28 September 2017
Functional analysis of the Lactococcus lactis galU and galE genes and their impact on sugar nucleotide and exopolysaccharide biosynthesis
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28 September 2017
Molecular physiology of sugar catabolism in Lactococcus lactis IL1403.
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28 September 2017
Twofold reduction of phosphofructokinase activity in Lactococcus lactis results in strong decreases in growth rate and in glycolytic flux.
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28 September 2017
Lactococcus lactis as a cell factory for high-level diacetyl production
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28 September 2017
Metabolic engineering of Lactobacillus helveticus CNRZ32 for production of pure L-(+)-lactic acid
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28 September 2017
D-Lactate dehydrogenase gene (ldhD) inactivation and resulting metabolic effects in the Lactobacillus johnsonii strains La1 and N312.
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28 September 2017
Cofactor engineering: a novel approach to metabolic engineering in Lactococcus lactis by controlled expression of NADH oxidase.
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28 September 2017
Control of the shift from homolactic acid to mixed-acid fermentation in Lactococcus lactis: predominant role of the NADH/NAD+ ratio
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28 September 2017
Controlled gene expression systems for Lactococcus lactis with the food-grade inducer nisin.
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28 September 2017
Genetic manipulation of the pathway for diacetyl metabolism in Lactococcus lactis.
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28 September 2017
Metabolic engineering of Lactococcus lactis: influence of the overproduction of alpha-acetolactate synthase in strains deficient in lactate dehydrogenase as a function of culture conditions
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28 September 2017
Lactobacillus plantarum ldhL gene: overexpression and deletion
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28 September 2017
Cloning, characterization and insertional inactivation of the Lactobacillus helveticus D(-) lactate dehydrogenase gene
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28 September 2017
Galactose fermentation by Streptococcus lactis and Streptococcus cremoris: pathways, products, and regulation.
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28 September 2017
Carbohydrate metabolism in lactic acid bacteria
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28 September 2017
Uncommon pathways of metabolism among lactic acid bacteria
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28 September 2017
Acetaldehyde: an intermediate in the formation of ethanol from glucose by lactic acid bacteria
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28 September 2017
Glycolysis and the regulation of glucose transport in Lactococcus lactis spp. lactis in batch and fed-batch culture
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31 May 2018
Characterization of the role of para-aminobenzoic acid biosynthesis in folate production by Lactococcus lactis
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31 May 2018
Sorbitol synthesis by an engineered Lactobacillus casei strain expressing a sorbitol-6-phosphate dehydrogenase gene within the lactose operon.
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31 May 2018
Lactococcus lactis as a cell factory: a twofold increase in phosphofructokinase activity results in a proportional increase in specific rates of glucose uptake and lactate formation.
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28 November 2018
Production of xylitol from D-xylose by recombinant Lactococcus lactis
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28 November 2018
Improved mannitol production by a random mutant of Leuconostoc pseudomesenteroides
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PubMed Central
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28 November 2018
Strain improvement and metabolic flux analysis in the wild-type and a mutant Lactobacillus lactis strain for L(+)-lactic acid production
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PubMed Central
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28 November 2018
Multivitamin production in Lactococcus lactis using metabolic engineering
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Metabolic engineering of Lactobacillus fermentum for production of mannitol and pure L-lactic acid or pyruvate
1 reference
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
retrieved
28 November 2018
Time dependent responses of glycolytic intermediates in a detailed glycolytic model of Lactococcus lactis during glucose run-out experiments
1 reference
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Metabolic engineering of lactic acid bacteria, the combined approach: kinetic modelling, metabolic control and experimental analysis.
1 reference
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Lactate dehydrogenase has no control on lactate production but has a strong negative control on formate production in Lactococcus lactis
1 reference
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PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Glucose metabolism and regulation of glycolysis in Lactococcus lactis strains with decreased lactate dehydrogenase activity.
1 reference
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Regulation of pyruvate metabolism in Lactococcus lactis depends on the imbalance between catabolism and anabolism
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Lactic acid bacteria as a cell factory: rerouting of carbon metabolism in Lactococcus lactis by metabolic engineering
1 reference
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Metabolic characterization of Lactococcus lactis deficient in lactate dehydrogenase using in vivo 13C-NMR.
1 reference
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Conversion of Lactococcus lactis from homolactic to homoalanine fermentation through metabolic engineering
1 reference
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PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3962192
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28 November 2018
Formation of acetaldehyde from threonine by lactic acid bacteria
1 reference
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PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/24688663
retrieved
12 December 2020
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Identifiers
DOI
10.5936/CSBJ.201210003
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PMC publication ID
3962192
1 reference
stated in
PubMed
PubMed publication ID
24688663
1 reference
stated in
PubMed
ResearchGate publication ID
261257710
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