The energetics of Escherichia coli during aerobic growth in continuous culture.
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[1] B. Thorell,et al. Glycogen-like Polyglucose in Escherichia coli B during the First Hours of Growth. , 1956 .
[2] D. Harrison,et al. The effect of growth conditions on respiratory activity and growth efficiency in facultative anaerobes grown in chemostat culture. , 1971, Journal of general microbiology.
[3] R. Poole,et al. Effects of sulphate-limited growth in continuous culture on the electron-transport chain and energy conservation in Escherichia coli K12. , 1975, The Biochemical journal.
[4] E. Lin,et al. The activation of glycerol dehydrogenase from Aerobacter aerogenes by monovalent cations. , 1960, The Journal of biological chemistry.
[5] T. Bauchop,et al. The growth of micro-organisms in relation to their energy supply. , 1960, Journal of general microbiology.
[6] J. Burnell,et al. The reversibility of active sulphate transport in membrane vesicles of Paracoccus denitrificans. , 1975, The Biochemical journal.
[7] W. Hempfling,et al. Effects of varying the carbon source limiting growth on yield and maintenance characteristics of Escherichia coli in continuous culture , 1975, Journal of bacteriology.
[8] A. H. Stouthamer. Chapter XIX Determination and Significance of Molar Growth Yields , 1969 .
[9] S. Nagai,et al. Reassessment of maintenance and energy uncoupling in the growth of Azotobacter vinelandii. , 1972, Journal of general microbiology.
[10] J. Baak,et al. Oxidative phosphorylation in intact Azotobacter vinelandii , 1971, FEBS letters.
[11] P. Mitchell,et al. Respiration-driven proton translocation in rat liver mitochondria. , 1967, The Biochemical journal.
[12] W. Hempfling. Studies of the efficiency of oxidative phosphorylation in intact Escherichia coli B. , 1970, Biochimica et biophysica acta.
[13] H. Mahler,et al. THE LACTIC DEHYDROGENASES OF E. COLI * , 1965, Annals of the New York Academy of Sciences.
[14] P. J. Phipps,et al. Chapter III Chemical Analysis of Microbial Cells , 1971 .
[15] D. Meyer,et al. Oxidative phosphorylation in bacteria which contain different cytochrome oxidases. , 1973, European journal of biochemistry.
[16] H. Lawford,et al. Respiration-driven proton translocation in Escherichia coli (Short Communication) , 1973 .
[17] I. West,et al. Proton-coupled β-galactoside translocation in non-metabolizingEscherichia coli , 1972, Journal of bioenergetics.
[18] P. Mitchell,et al. Respiration-driven proton translocation in micrococcus denitrificans , 1970, Journal of bioenergetics.
[19] J. Senez. Some considerations on the energetics of bacterial growth. , 1962, Bacteriological reviews.
[20] B. Horecker,et al. PATHWAYS OF D-GLUCOSE METABOLISM IN SALMONELLA TYPHINMURIUM. A STUDY OF A MUTANT LACKING PHOSPHOGLUCOSE ISOMERASE. , 1964, The Journal of biological chemistry.
[21] I. C. Gunsalus,et al. CHAPTER 1 – Energy-Yielding Metabolism in Bacteria , 1961 .
[22] A. H. Stouthamer,et al. Utilization of energy for growth and maintenance in continuous and batch cultures of microorganisms. A reevaluation of the method for the determination of ATP production by measuring molar growth yields. , 1973, Biochimica et biophysica acta.
[23] I. West,et al. The proton‐translocating ATPase of Escherichia coli , 1974, FEBS letters.
[24] J. M. Brice,et al. Energy conservation in Escherichia coli and Klebsiella pneumoniae , 1974 .
[25] M. J. Pine. Steady-State Measurement of the Turnover of Amino Acid in the Cellular Proteins of Growing Escherichia coli: Existence of Two Kinetically Distinct Reactions , 1970, Journal of bacteriology.
[26] M. Grunberg‐Manago,et al. Enzymatic phosphorylation of acetate. , 1954, The Journal of biological chemistry.
[27] D. Walker,et al. The generation and utilization of energy during growth. , 1971, Advances in microbial physiology.
[28] Marvin J. Johnson,et al. Energy Supply and Cell Yield in Aerobically Grown Microorganisms , 1967 .
[29] S. Roseman,et al. Sugar transport. I. Isolation of a phosphotransferase system from Escherichia coli. , 1971, The Journal of biological chemistry.
[30] J. Gerrits,et al. RELATION BETWEEN ENERGY PRODUCTION AND GROWTH OF AEROBACTER AEROGENES. , 1964, Journal of general microbiology.
[31] C. Jones,et al. The respiratory system of Azotobacter vinelandii. 2. Oxygen effects. , 1971, European journal of biochemistry.
[32] J. Burnell,et al. Phosphate transport in membrane vesicles of Paracoccus denitrificans , 1975, FEBS letters.
[33] J. Ashworth,et al. The anaplerotic fixation of carbon dioxide by Escherichia coli , 1966, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[34] T. Ferenci,et al. Pathway of fructose utilization by Escherichia coli , 1971, FEBS letters.
[35] W. H. Pearlman. Book Review:Les Oestrogenes Naturels: Biosynthese et Metabolisme. Lise Cedard , 1966 .
[36] Ennis Layne,et al. SPECTROPHOTOMETRIC AND TURBIDIMETRIC METHODS FOR MEASURING PROTEINS , 1957 .
[37] J. M. Brice,et al. Bacterial respiration-linked proton translocation and its relationship to respiratory-chain composition. , 1975, European journal of biochemistry.
[38] I. West. The proton-coupled beta-galactoside translocation in non-metabolizing Escherichia coli. , 1972 .
[39] M. Schechter,et al. Oxygen uptake of single insects determinated with a polarographic oxygen electrode. , 1968, Analytical biochemistry.