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5.6.3  Stationary-Phase Gene Regulation in Escherichia coli? (Regine Hengge) (12-16-2011)
4.4.7  The DNA Exonucleases of Escherichia coli (Susan T. Lovett) (06-10-2011)
4.2.2  Translation Initiation (Yves Méchulam, Sylvain Blanquet, and Emmanuelle Schmitt) (06-10-2011)
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5.6.3  Stationary-Phase Gene Regulation in Escherichia coli?
7.2.6  Homologous Recombination-Experimental Systems, Analysis, and Significance
1.1.2  Escherichia coli and the Emergence of Molecular Biology
4.4.7  The DNA Exonucleases of Escherichia coli
4.2.2  Translation Initiation
4.3.8  Assembly of Outer Membrane β-Barrel Proteins: the Bam Complex
5.6.6  The Origin of Mutants under Selection: Interactions of Mutation, Growth, and Selection
3.6.3.2  Biosynthesis of Riboflavin
4.3.2  The Tat Protein Export Pathway
4.3.7  Biogenesis and Membrane Targeting of Lipoproteins
4.3.4  Type II Secretion in Escherichia coli
1.2  The Legacy of 20th Century Phage Research
4.4.8  DNA Helicases
4.3.6  Type V Secretion: the Autotransporter and Two-Partner Secretion Pathways
3.3.3  Binding Protein-Dependent Uptake of Maltose into Cells via an ATP-Binding Cassette Transporter
3.3.2  Bacterial Ion Channels
3.3.1  Solute and Ion Transport: Outer Membrane Pores and Receptors
10.2.1  Reconstruction and Use of Microbial Metabolic Networks: the Core Escherichia coli Metabolic Model as an Educational Guide
1.1.1  Escherichia coli and the French School of Molecular Biology
4.4.1  Initiation of DNA Replication
3.6.3.3  Biosynthesis of Menaquinone (Vitamin K2) and Ubiquinone (Coenzyme Q)
8.6.1.3  Uropathogenic Escherichia coli
5.5  Cell-to-Cell Signaling in Escherichia coli and Salmonella
8.8.3  NLRs: Nucleotide-Binding Domain and Leucine-Rich-Repeat-Containing Proteins
5.4.5  Osmotic Stress
2.6  The Nucleoid: an Overview
5.4.4.3  Transition Metal Homeostasis
4.7.4  Glycogen: Biosynthesis and Regulation
5.4.4  Oxidative Stress
8.8.11  Adaptive Immune Responses during Salmonella Infection
3.6.1.9  Biosynthesis of Histidine
3.2.7  Oxygen as Acceptor
4.4.2  Replisome Dynamics during Chromosome Duplication
4.4.9  DNA Topoisomerases
5.4.7  Envelope Stress Responses
3.6.3.10  Biogenesis and Homeostasis of Nicotinamide Adenine Dinucleotide Cofactor
4.4.5  DNA Methylation
3.6.3.7  Biosynthesis of Thiamin Pyrophosphate
4.7.3  Structure and Assembly of Escherichia coli Capsules
2.5.4  Structural Basis for the Decoding Mechanism
3.6.3.12  Cytochrome c Biogenesis
3.6.1.8  Biosynthesis of the Aromatic Amino Acids
4.7.1.5  Peptidoglycan Recycling
3.6.4  Biosynthesis of Membrane Lipids
5.2.3  Modulation of Chemical Composition and Other Parameters of the Cell at Different Exponential Growth Rates
5.4.4.2  Magnesium Transport and Magnesium Homeostasis
2.5.7  Antibiotic Resistance Mechanisms, with an Emphasis on Those Related to the Ribosome
3.6.1  Amino Acid Metabolism and Fluxes
3.6.2  Nucleotides, Nucleosides, and Nucleobases
8.6.2.2  Invasive Salmonellosis in Humans
 
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