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Publications by Andreas Willimek
The Phosphotransferase System of Streptomyces Coelicolor Is Biased for N-Acetylglucosamine Metabolism
Journal of Bacteriology
Microbiology
Molecular Biology
Related publications
The Chitin Disaccharide,N,N′-Diacetylchitobiose, Is Catabolized byEscherichia Coliand Is Transported/Phosphorylated by the Phosphoenolpyruvate:Glycose Phosphotransferase System
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
Orthogonal Regulatory Circuits for Escherichia Coli Based on the Butyrolactone System of Streptomyces Coelicolor
Cytochrome P450 107U1 Is Required for Sporulation and Antibiotic Production in Streptomyces Coelicolor
Archives of Biochemistry and Biophysics
Biochemistry
Molecular Biology
Biophysics
Glutamate Synthesis in Streptomyces Coelicolor.
Journal of Bacteriology
Microbiology
Molecular Biology
Phase Variation in the Phage Growth Limitation System of Streptomyces Coelicolor A3(2)
Journal of Bacteriology
Microbiology
Molecular Biology
Secondary Metabolites Produced During the Germination of Streptomyces Coelicolor
Frontiers in Microbiology
Microbiology
Differential Transcription of Expanded Gene Families in Central Carbon Metabolism of Streptomyces Coelicolor A3(2)
Identification of an N -Acetylglucosamine Kinase Essential for UDP-N -Acetylglucosamine Salvage Synthesis in Arabidopsis
FEBS Letters
Genetics
Cell Biology
Molecular Biology
Biochemistry
Structural Biology
Biophysics
The Master Regulator PhoP Coordinates Phosphate and Nitrogen Metabolism, Respiration, Cell Differentiation and Antibiotic Biosynthesis: Comparison in Streptomyces Coelicolor and Streptomyces Avermitilis
Journal of Antibiotics
Drug Discovery
Pharmacology