Hydroaromatic equilibration during biosynthesis of shikimic acid.
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Shikimic Acid Production in Escherichia coli: From Classical Metabolic Engineering Strategies to Omics Applied to Improve Its ProductionThe 2.3-A crystal structure of the shikimate 5-dehydrogenase orthologue YdiB from Escherichia coli suggests a novel catalytic environment for an NAD-dependent dehydrogenase[How safe was oseltamivir care in the flu pandemic?].Pandemism of swine flu and its prospective drug therapy.A general glycomimetic strategy yields non-carbohydrate inhibitors of DC-SIGN.Global genome analysis of the shikimic acid pathway reveals greater gene loss in host-associated than in free-living bacteria.Expanding horizons of shikimic acid. Recent progresses in production and its endless frontiers in application and market trends.Flux variability scanning based on enforced objective flux for identifying gene amplification targets.Modular engineering of L-tyrosine production in Escherichia coli.Generation of aroE overexpression mutant of Bacillus megaterium for the production of shikimic acid.Tunable switch mediated shikimate biosynthesis in an engineered non-auxotrophic Escherichia coli.Constructing de novo biosynthetic pathways for chemical synthesis inside living cells.Stimulatory Effects of Acibenzolar-S-Methyl on Chlorogenic Acids Biosynthesis in Centella asiatica CellsProduction of shikimic acid from Escherichia coli through chemically inducible chromosomal evolution and cofactor metabolic engineering.Current knowledge of the Escherichia coli phosphoenolpyruvate-carbohydrate phosphotransferase system: peculiarities of regulation and impact on growth and product formation.Metabolic flux responses to genetic modification for shikimic acid production by Bacillus subtilis strains.Metabolic engineering for the production of shikimic acid in an evolved Escherichia coli strain lacking the phosphoenolpyruvate: carbohydrate phosphotransferase system.Novel technologies combined with traditional metabolic engineering strategies facilitate the construction of shikimate-producing Escherichia coli.Constitutive expression of selected genes from the pentose phosphate and aromatic pathways increases the shikimic acid yield in high-glucose batch cultures of an Escherichia coli strain lacking PTS and pykF.A natural isolate producing shikimic acid: isolation, identification, and culture condition optimization.Novel comprehensive multidimensional liquid chromatography approach for elucidation of the microbosphere of shikimate-producing Escherichia coli SP1.1/pKD15.071 strain.Metabolic engineering of Escherichia coli to enhance shikimic acid production from sorbitol.Biomass-involved synthesis of N-substituted benzofuro[2,3-d]pyrimidine-4-amines and biological evaluation as novel EGFR tyrosine kinase inhibitors.Studies on the production of shikimic acid using the aroK knockout strain of Bacillus megaterium.Recombinant expression of glpK and glpD genes improves the accumulation of shikimic acid in E. coli grown on glycerol.
P2860
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P2860
Hydroaromatic equilibration during biosynthesis of shikimic acid.
description
2001 nî lūn-bûn
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2001年の論文
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2001年学术文章
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2001年学术文章
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2001年学术文章
@zh-hans
2001年学术文章
@zh-my
2001年学术文章
@zh-sg
2001年學術文章
@yue
2001年學術文章
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2001年學術文章
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name
Hydroaromatic equilibration during biosynthesis of shikimic acid.
@en
Hydroaromatic equilibration during biosynthesis of shikimic acid.
@nl
type
label
Hydroaromatic equilibration during biosynthesis of shikimic acid.
@en
Hydroaromatic equilibration during biosynthesis of shikimic acid.
@nl
prefLabel
Hydroaromatic equilibration during biosynthesis of shikimic acid.
@en
Hydroaromatic equilibration during biosynthesis of shikimic acid.
@nl
P2093
P356
P1476
Hydroaromatic equilibration during biosynthesis of shikimic acid.
@en
P2093
J L Barker
K M Draths
R von Daeniken
S S Chandran
P304
10173-10182
P356
10.1021/JA0109444
P407
P577
2001-10-01T00:00:00Z