Engineering global transcription factor cyclic AMP receptor protein of Escherichia coli for improved 1-butanol tolerance.
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Enhancing stress-resistance for efficient microbial biotransformations by synthetic biologyProduction of Fatty Acid-derived valuable chemicals in synthetic microbesGenome-wide Escherichia coli stress response and improved tolerance towards industrially relevant chemicalsDNA microarray of global transcription factor mutant reveals membrane-related proteins involved in n-butanol tolerance in Escherichia coliImproving ethanol tolerance of Escherichia coli by rewiring its global regulator cAMP receptor protein (CRP)Butanol tolerance regulated by a two-component response regulator Slr1037 in photosynthetic Synechocystis sp. PCC 6803.Improving acetate tolerance of Escherichia coli by rewiring its global regulator cAMP receptor protein (CRP).Enhancing E. coli isobutanol tolerance through engineering its global transcription factor cAMP receptor protein (CRP).Combinatorial and high-throughput screening approaches for strain engineering.Significantly improved solvent tolerance of Escherichia coli by global transcription machinery engineering.Using global transcription machinery engineering (gTME) to improve ethanol tolerance of Zymomonas mobilisImproved n-butanol production via co-expression of membrane-targeted tilapia metallothionein and the clostridial metabolic pathway in Escherichia coliIntegrated OMICS guided engineering of biofuel butanol-tolerance in photosynthetic Synechocystis sp. PCC 6803.Combinatorial approaches for inverse metabolic engineering applications.Production of long-chain hydroxy fatty acids by microbial conversion.Protein engineering for metabolic engineering: current and next-generation tools.cAMP receptor protein (CRP)-mediated resistance/tolerance in bacteria: mechanism and utilization in biotechnology.Genome mining, in silico validation and phase selection of a novel aldo-keto reductase from Candida glabrata for biotransformation.Regulatory mechanisms related to biofuel tolerance in producing microbes.Enhancing E. coli tolerance towards oxidative stress via engineering its global regulator cAMP receptor protein (CRP)Metabolic engineering of Escherichia coli for production of 2-phenylethanol from renewable glucose.Increased Microbial Butanol Tolerance by Exogenous Membrane Insertion Molecules.Engineering global transcription to tune lipophilic properties in Yarrowia lipolytica.
P2860
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P2860
Engineering global transcription factor cyclic AMP receptor protein of Escherichia coli for improved 1-butanol tolerance.
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2012 nî lūn-bûn
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2012 թուականի Մարտին հրատարակուած գիտական յօդուած
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2012 թվականի մարտին հրատարակված գիտական հոդված
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2012年の論文
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2012年学术文章
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2012年学术文章
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2012年学术文章
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2012年学术文章
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2012年学术文章
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2012年學術文章
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name
Engineering global transcripti ...... improved 1-butanol tolerance.
@ast
Engineering global transcripti ...... improved 1-butanol tolerance.
@en
Engineering global transcripti ...... improved 1-butanol tolerance.
@nl
type
label
Engineering global transcripti ...... improved 1-butanol tolerance.
@ast
Engineering global transcripti ...... improved 1-butanol tolerance.
@en
Engineering global transcripti ...... improved 1-butanol tolerance.
@nl
prefLabel
Engineering global transcripti ...... improved 1-butanol tolerance.
@ast
Engineering global transcripti ...... improved 1-butanol tolerance.
@en
Engineering global transcripti ...... improved 1-butanol tolerance.
@nl
P2093
P2860
P1476
Engineering global transcripti ...... improved 1-butanol tolerance.
@en
P2093
Chi Bun Ching
Hongfang Zhang
Huiqing Chong
Rongrong Jiang
P2860
P2888
P304
P356
10.1007/S00253-012-4012-5
P407
P50
P577
2012-03-31T00:00:00Z
P5875
P6179
1050888245