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revolučný orech nemocnica e.coli and oxygenase and stationary phase and bl21 moment sing tkanina

Light microscope images of E. coli BL21(DE3) without the SllB-carrying... |  Download Scientific Diagram
Light microscope images of E. coli BL21(DE3) without the SllB-carrying... | Download Scientific Diagram

The metabolic potential of Escherichia coli BL21 in defined and rich medium  | Microbial Cell Factories | Full Text
The metabolic potential of Escherichia coli BL21 in defined and rich medium | Microbial Cell Factories | Full Text

Comparative genomics and experimental evolution of Escherichia coli BL21(DE3)  strains reveal the landscape of toxicity escape from membrane protein  overproduction | Scientific Reports
Comparative genomics and experimental evolution of Escherichia coli BL21(DE3) strains reveal the landscape of toxicity escape from membrane protein overproduction | Scientific Reports

Highly Efficient Biosynthesis of Heliotropin by Engineered Escherichia coli  Coexpressing Trans-Anethole Oxygenase and Formate Dehydrogenase | Journal  of Agricultural and Food Chemistry
Highly Efficient Biosynthesis of Heliotropin by Engineered Escherichia coli Coexpressing Trans-Anethole Oxygenase and Formate Dehydrogenase | Journal of Agricultural and Food Chemistry

Reprogramming T7RNA Polymerase in Escherichia coli Nissle 1917 under  Specific Lac Operon for Efficient p-Coumaric Acid Production | ACS  Synthetic Biology
Reprogramming T7RNA Polymerase in Escherichia coli Nissle 1917 under Specific Lac Operon for Efficient p-Coumaric Acid Production | ACS Synthetic Biology

High-level production of membrane proteins in E. coli BL21(DE3) by omitting  the inducer IPTG | Microbial Cell Factories | Full Text
High-level production of membrane proteins in E. coli BL21(DE3) by omitting the inducer IPTG | Microbial Cell Factories | Full Text

Engineering of Baeyer-Villiger monooxygenase-based Escherichia coli  biocatalyst for large scale biotransformation of ricinoleic acid into  (Z)-11-(heptanoyloxy)undec-9-enoic acid | Scientific Reports
Engineering of Baeyer-Villiger monooxygenase-based Escherichia coli biocatalyst for large scale biotransformation of ricinoleic acid into (Z)-11-(heptanoyloxy)undec-9-enoic acid | Scientific Reports

Comparison of engineered Escherichia coli AF1000 and BL21 strains for  (R)-3-hydroxybutyrate production in fed-batch cultivation | SpringerLink
Comparison of engineered Escherichia coli AF1000 and BL21 strains for (R)-3-hydroxybutyrate production in fed-batch cultivation | SpringerLink

Microorganisms | Free Full-Text | The Physiological Responses of Escherichia  coli Triggered by Phosphoribulokinase (PrkA) and Ribulose-1,5-Bisphosphate  Carboxylase/Oxygenase (Rubisco)
Microorganisms | Free Full-Text | The Physiological Responses of Escherichia coli Triggered by Phosphoribulokinase (PrkA) and Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase (Rubisco)

Strain-Level Discrimination of Bacteria by Liquid Chromatography and Paper  Spray Ion Mobility Mass Spectrometry | Journal of the American Society for  Mass Spectrometry
Strain-Level Discrimination of Bacteria by Liquid Chromatography and Paper Spray Ion Mobility Mass Spectrometry | Journal of the American Society for Mass Spectrometry

IJMS | Free Full-Text | Photo-Methionine, Azidohomoalanine and  Homopropargylglycine Are Incorporated into Newly Synthesized Proteins at  Different Rates and Differentially Affect the Growth and Protein Expression  Levels of Auxotrophic and Prototrophic E.
IJMS | Free Full-Text | Photo-Methionine, Azidohomoalanine and Homopropargylglycine Are Incorporated into Newly Synthesized Proteins at Different Rates and Differentially Affect the Growth and Protein Expression Levels of Auxotrophic and Prototrophic E.

PDF) Growth of E. coli BL21 in minimal media with different gluconeogenic  carbon sources and salt contents
PDF) Growth of E. coli BL21 in minimal media with different gluconeogenic carbon sources and salt contents

3′-UTR engineering to improve soluble expression and fine-tuning of  activity of cascade enzymes in Escherichia coli | Scientific Reports
3′-UTR engineering to improve soluble expression and fine-tuning of activity of cascade enzymes in Escherichia coli | Scientific Reports

Artificial Consortium of Three E. coli BL21 Strains with Synergistic  Functional Modules for Complete Phenanthrene Degradation | ACS Synthetic  Biology
Artificial Consortium of Three E. coli BL21 Strains with Synergistic Functional Modules for Complete Phenanthrene Degradation | ACS Synthetic Biology

Antioxidants | Free Full-Text | Optimization of a Method for Detecting  Intracellular Sulfane Sulfur Levels and Evaluation of Reagents That Affect  the Levels in Escherichia coli
Antioxidants | Free Full-Text | Optimization of a Method for Detecting Intracellular Sulfane Sulfur Levels and Evaluation of Reagents That Affect the Levels in Escherichia coli

Tailoring the evolution of BL21(DE3) uncovers a key role for RNA stability  in gene expression toxicity | Communications Biology
Tailoring the evolution of BL21(DE3) uncovers a key role for RNA stability in gene expression toxicity | Communications Biology

Frontiers | The Catalytic Role of RuBisCO for in situ CO2 Recycling in Escherichia  coli
Frontiers | The Catalytic Role of RuBisCO for in situ CO2 Recycling in Escherichia coli

Artificial Consortium of Three E. coli BL21 Strains with Synergistic  Functional Modules for Complete Phenanthrene Degradation | ACS Synthetic  Biology
Artificial Consortium of Three E. coli BL21 Strains with Synergistic Functional Modules for Complete Phenanthrene Degradation | ACS Synthetic Biology

IJMS | Free Full-Text | Photo-Methionine, Azidohomoalanine and  Homopropargylglycine Are Incorporated into Newly Synthesized Proteins at  Different Rates and Differentially Affect the Growth and Protein Expression  Levels of Auxotrophic and Prototrophic E.
IJMS | Free Full-Text | Photo-Methionine, Azidohomoalanine and Homopropargylglycine Are Incorporated into Newly Synthesized Proteins at Different Rates and Differentially Affect the Growth and Protein Expression Levels of Auxotrophic and Prototrophic E.

Growth curve of E. coli BL21 strains expressing S3-4mer-DP and... |  Download Scientific Diagram
Growth curve of E. coli BL21 strains expressing S3-4mer-DP and... | Download Scientific Diagram

Efficient Bioproduction of Indigo and Indirubin by Optimizing a Novel  Terpenoid Cyclase XiaI in Escherichia coli | ACS Omega
Efficient Bioproduction of Indigo and Indirubin by Optimizing a Novel Terpenoid Cyclase XiaI in Escherichia coli | ACS Omega

Growth curves for E coli BL21 (DE3) transfected with ngMinE in pET21a.... |  Download Scientific Diagram
Growth curves for E coli BL21 (DE3) transfected with ngMinE in pET21a.... | Download Scientific Diagram

Improved Method for the Incorporation of Heme Cofactors into Recombinant  Proteins Using Escherichia coli Nissle 1917 | Biochemistry
Improved Method for the Incorporation of Heme Cofactors into Recombinant Proteins Using Escherichia coli Nissle 1917 | Biochemistry

Microorganisms | Free Full-Text | Microbial Production of Bioactive  Retinoic Acid Using Metabolically Engineered Escherichia coli
Microorganisms | Free Full-Text | Microbial Production of Bioactive Retinoic Acid Using Metabolically Engineered Escherichia coli

Multi-omics Quantification of Species Variation of Escherichia coli Links  Molecular Features with Strain Phenotypes - ScienceDirect
Multi-omics Quantification of Species Variation of Escherichia coli Links Molecular Features with Strain Phenotypes - ScienceDirect

PDF) Metabolic engineering of Escherichia coli BL21 (DE3) for de novo  production of l-DOPA from d-glucose
PDF) Metabolic engineering of Escherichia coli BL21 (DE3) for de novo production of l-DOPA from d-glucose