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Publications by David G. Christensen
Global Lysine Acetylation in Escherichia Coli Results From Growth Conditions That Favor Acetate Fermentation
Journal of Bacteriology
Microbiology
Molecular Biology
Increasing Growth Yield and Decreasing Acetylation in Escherichia Coli by Optimizing the Carbon-To-Magnesium Ratio in Peptide-Based Media
Applied and Environmental Microbiology
Applied Microbiology
Biotechnology
Ecology
Food Science
Related publications
Genetically Encoding Thioacetyl-Lysine as a Nondeacetylatable Analog of Lysine Acetylation in Escherichia Coli
FEBS Open Bio
Biochemistry
Genetics
Molecular Biology
Reversible Lysine Acetylation Is Involved in DNA Replication Initiation by Regulating Activities of Initiator DnaA in Escherichia Coli
Scientific Reports
Multidisciplinary
Effect of Growth Conditions on DNA-membrane Attachment in Escherichia Coli.
Proceedings of the National Academy of Sciences of the United States of America
Multidisciplinary
A Gene Involved in Lysine Excretion in Escherichia Coli K12
Heredity
Genetics
Overflow Metabolism in Escherichia Coli Results From Efficient Proteome Allocation
Nature
Multidisciplinary
Functions That Protect Escherichia Coli From DNA–protein Crosslinks
DNA Repair
Biochemistry
Cell Biology
Molecular Biology
nusA Amber Mutation That Causes Temperature-Sensitive Growth of Escherichia Coli.
Journal of Bacteriology
Microbiology
Molecular Biology
Global Expression Profiling of Acetate-grownEscherichia Coli
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
Homolactate Fermentation by Metabolically Engineered Escherichia Coli Strains
Applied and Environmental Microbiology
Applied Microbiology
Biotechnology
Ecology
Food Science