Effect of carbon dioxide on yeast growth and fermentation
暂无分享,去创建一个
[1] J. Gallon,et al. Characteristics of nitrogenase activity in broken cell preparations of the blue-green alga Gloeocapsa sp. LB 795. , 1972, Canadian journal of microbiology.
[2] B. Cannon,et al. The physiological role of pyruvate carboxylation in hamster brown adipose tissue. , 1979, European journal of biochemistry.
[3] J. Londesborough,et al. Carbon Dioxide Fixation by Baker's Yeast in a Variety of Growth Conditions , 1980 .
[4] L. Wojtczak,et al. Surface change of biological membranes as a possible regulator of membrane-bound enzymes. , 1979, European journal of biochemistry.
[5] J. Puskin,et al. Effects of anesthetics on divalent cation binding and fluidity of phosphatidylserine vesicles. , 1978, Molecular Pharmacology.
[6] R. Krauss,et al. The inhibition of cell division in Saccharomyces cerevisiae (Meyen) by carbon dioxide , 1972 .
[7] R. Douce,et al. Effect of bicarbonate and oxaloacetate on malate oxidation by spinach leaf mitochondria. , 1980, Biochimica et biophysica acta.
[8] J Gutknecht,et al. Diffusion of carbon dioxide through lipid bilayer membranes. Effects of carbonic anhydrase, bicarbonate, and unstirred layers , 1977, The Journal of general physiology.
[9] J. Ogg,et al. Carbon dioxide regulation of formate hydrogenlyase in Escherichia coli. , 1969, Biochemical and biophysical research communications.
[10] M. Teubner,et al. Electrostatic interactions at charged lipid membranes. I. Effects of pH and univalent cations on membrane structure. , 1976, Biophysical chemistry.
[11] R. Thauer,et al. The active species of 'CO2' utilized by reduced ferredoxin:CO2 oxidoreductase from Clostridium pasteurianum. , 1975, European journal of biochemistry.
[12] K. Ohta,et al. Compositions and a Role of Aspergillus oryzae-Proteolipid as a High Concentration Alcohol-producing Factor , 1976 .
[13] W. A. Hunt,et al. Physico-chemical correlates of alcohol intoxication , 1978, Neuropharmacology.
[14] W. Hulbert,et al. The phosphoenol-pyruvate branchpoint in adult Hymenolepis diminuta (Cestoda): a study of pyruvate kinase and phosphoenol-pyruvate carboxykinase. , 1977, The Journal of experimental zoology.
[15] A. Bangham,et al. Selective compartmentation of the hydration products of carbon dioxide in liposomes, and its role in regulating water movement. , 1977, Biochimica et biophysica acta.
[16] M. Losada,et al. Properties and function of yeast pyruvate carboxylase. , 1965, The Journal of biological chemistry.
[17] H. Wood,et al. The carboxylation of phosphoenolpyruvate and pyruvate. I. The active species of "CO2" utilized by phosphoenolpyruvate carboxykinase, carboxytransphosphorylase, and pyruvate carboxylase. , 1968, The Journal of biological chemistry.
[18] B. de Kruijff,et al. Comparative studies on the effects of pH and Ca2+ on bilayers of various negatively charged phospholipids and their mixtures with phosphatidylcholine. , 1978, Biochimica et biophysica acta.
[19] I. Chet,et al. Effect of Carbon Dioxide on Growth and Carbohydrate Metabolism in Sclerotium rolfsii , 1977 .
[20] G. Baverel,et al. A role for bicarbonate in the regulation of mammalian glutamine metabolism. , 1979, The Biochemical journal.
[21] G. Klassen,et al. The effect of carbon dioxide and H + on canine erythrocyte glycolysis. , 1972, Respiration physiology.
[22] R. Cooke,et al. Involvement of lipids in the action of ethanol and other anesthetics. , 1980, Advances in experimental medicine and biology.
[23] M. J. Hunter,et al. Human erythrocyte anion permeabilities measured under conditions of net charge transfer , 1977, The Journal of physiology.
[24] C. Nagel,et al. Growth Inhibition of a Pseudomonas by Carbon Dioxide , 1967 .
[25] J. Świerczyński,et al. Activation of succinate dehydrogenase by bicarbonate. , 1978, Biochemical and biophysical research communications.
[26] A. Gandhi,et al. Effect of carbon dioxide on the formation of α‐amylase by Bacillus subtilis growing in continuous and batch cultures , 1975, Biotechnology and bioengineering.
[27] M. D. Hatch,et al. Regulation of mitochondrial NAD-malic enzyme involved in C4 pathway photosynthesis. , 1977, Archives of biochemistry and biophysics.
[28] A. Schumpe,et al. Estimation of O2 and CO2 solubiliteis in fermentation media , 1979 .
[29] L. Ingram,et al. Ethanol-induced changes in lipid composition of Escherichia coli: inhibition of saturated fatty acid synthesis in vitro. , 1980, Archives of biochemistry and biophysics.
[30] J. Wells. Growth of Erwinia carotovora, E. atroseptica and Pseudomonas fluorescens in Low Oxygen and High Carbon Dioxide Atmospheres , 1974 .
[31] G. Lorimer,et al. Activation of ribulose-1, 5-bisphosphate oxygenase, The role of Mg2+, CO2, and pH. , 1976, Archives of biochemistry and biophysics.
[32] A. H. Rose,et al. Plasma-membrane lipid unsaturation can affect the kinetics of solute accumulation by Saccharomyces cerevisiae , 1979 .
[33] M. Mitz. CO2 biodynamics: a new concept of cellular control. , 1979, Journal of theoretical biology.
[34] V. Rubio,et al. Mechanism of carbamoyl-phosphate synthetase. Properties of the two binding sites for ATP. , 1979, European journal of biochemistry.
[35] L. Masotti,et al. Perturbation of membrane fluidity , 1975 .
[36] H. Eyring,et al. Antagonism between high pressure and anesthetics in the thermal phase-transition of dipalmitoyl phosphatidylcholine bilayer. , 1979, Biochimica et biophysica acta.
[37] W. Anderson,et al. Inhibitory effect of physiological bicarbonate ion levels on the activities of glucose 6-phosphate phosphohydrolase. , 1969, The Journal of biological chemistry.
[38] C. Gill,et al. Effect of carbon dioxide on growth of Pseudomonas fluorescens , 1979, Applied and environmental microbiology.
[39] R. Emerson,et al. AQUALINDERELLA FERMENTANS GEN. ET SP. N., A PHYCOMYCETE ADAPTED TO STAGNANT WATERS. II. ISOLATION, CULTURAL CHARACTERISTICS, AND GAS RELATIONS , 1969 .
[40] R. S. Levy,et al. Structure-function relationships in TPN-dependent isocitrate dehydrogenase. I. Electron paramagnetic resonance studies of the interaction of enzyme-bound Mn(II) with substrates, cofactors, and substrate analogues. , 1977, Biochemistry.
[41] L. J. Edwards. Carbon dioxide anaesthesia and succinic dehydrogenase in the corn earworm, Heliothis zea☆ , 1968 .
[42] W. Nickerson,et al. Nutritional Requirements for Growth and Yeastlike Development of Mucor rouxii Under Carbon Dioxide , 1970, Journal of bacteriology.
[43] A. Gómez-Puyou,et al. Effect of the pH of the incubation medium on glycolysis and respiration in Saccharomyces cerevisiae. , 1972, Archives of biochemistry and biophysics.
[44] H. P. Charles,et al. Mutants of Neurospora crassa, Escherichia coli and Salmonella typhimurium specifically inhibited by carbon dioxide. , 1970, Journal of general microbiology.
[45] M. Lane,et al. The enzymatic carboxylation of phosphoenolpyruvate. V. Kinetic and 18-O studies on liver mitochondrial phosphoenolpyruvate carboxykinase. , 1968, The Journal of biological chemistry.
[46] A. G. Jacques,et al. THE KINETICS OF PENETRATION II. THE PENETRATION OF CO2 INTO VALONIA , 1930 .
[47] H. Wood,et al. The carboxylation of phosphoenolpyruvate and pyruvate. II. The active species of "CO2" utilized by phosphoenlpyruvate carboxylase and pyruvate carboxylase. , 1971, The Journal of biological chemistry.
[48] J. P. Ryan,et al. The role of intracellular pH in the regulation of cation exchanges in yeast. , 1972, The Biochemical journal.
[49] S. Enfors,et al. The influence of high concentrations of carbon dioxide on the germination of bacterial spores. , 1978, The Journal of applied bacteriology.
[50] R. Čapek,et al. An intracellular study of the actions of carbon dioxide on the spinal monosynaptic pathway. , 1973, Canadian journal of physiology and pharmacology.
[51] J. Truchot. Carbon dioxide combining properties of the blood of the shore crab Carcinus maenas (L): carbon dioxide solubility coefficient and carbonic acid dissociation constants. , 1976, The Journal of experimental biology.
[52] C S Ough,et al. Multiplication and fermentation of Saccharomyces cerevisiae under carbon dioxide pressure in wine. , 1966, Applied microbiology.
[53] J. Cannata,et al. Phosphopyruvate carboxylase from baker's yeast. II. Properties of enzyme. , 1963, The Journal of biological chemistry.
[54] G. Klassen,et al. Carbon dioxide mediated glycolysis II. , 1973, Respiration physiology.
[55] A. Hillier,et al. The metabolism of [14C]bicarbonate by Streptococcus lactis: the fixation of [14C]bicarbonate by pyruvate carboxylase , 1978, Journal of Dairy Research.
[56] F. Alterthum,et al. Osmotic lysis of sphaeroplasts from Saccharomyces cerevisiae grown anaerobically in media containing different unsaturated fatty acids. , 1973, Journal of general microbiology.
[57] H. Shibai,et al. Analysis of the Carbon Dioxide Inhibition by Means of Dissolved Carbon Dioxide Controlled Culture , 1973 .
[58] R. Repaske,et al. Carbon Dioxide Control of Lag Period and Growth of Streptococcus sanguis , 1974, Journal of bacteriology.
[59] R. E. Hartman,et al. Carbon Dioxide Fixation by Verticillium albo-atrum , 1972 .
[60] M. Levandowsky,et al. Calcium-dependent sensory-motor response of a marine dinoflagellate to CO2 , 1978, Nature.
[61] U. Puistola,et al. Studies on the lysyl hydroxylase reaction. II. Inhibition kinetics and the reaction mechanism. , 1980, Biochimica et biophysica acta.
[62] R. Mudgett. Controlled gas environments in industrial fermentations , 1980 .
[63] S. Hayashida,et al. Physiological Properties of Yeast Cells Grown in the Proteolipid-Supplemented Media , 1975 .
[64] E. Noble,et al. Biochemistry and pharmacology of ethanol , 1979 .
[65] J. Cazzulo,et al. Carboxylase Levels and Carbon Dioxide Fixation in Baker's Yeast , 1968, Journal of bacteriology.
[66] K. Uchida. Alteration of the Unsaturated to Saturated Ratio of Fatty Acids in Bacterial Lipids by Alcohols , 1975 .
[67] C. Bryant,et al. Regulatory properties of a partially purified preparation of pyruvate kinase from Fasciola hepatica. , 1980, International journal for parasitology.
[68] S. Enfors,et al. Effect of high concentrations of carbon dioxide on growth rate of Pseudomonas fragi, Bacillus cereus and Streptococcus cremoris. , 1980, The Journal of applied bacteriology.
[69] A. B. Hastings. A biochemist's anabasis. , 1970, Annual review of biochemistry.
[70] A. Theuvenet,et al. Kinetics of ion translocation across charged membranes mediated by a two-site transport mechanism. Effects of polyvalent cations upon rubidium uptake into yeast cells. , 1976, Biochimica et biophysica acta.
[71] G. Lorimer,et al. The activation of ribulose-1,5-bisphosphate carboxylase by carbon dioxide and magnesium ions. Equilibria, kinetics, a suggested mechanism, and physiological implications. , 1976, Biochemistry.
[72] E. Krabbe,et al. Fluid dynamics of anaerobic fermentation , 1969, Biotechnology and bioengineering.
[73] Fumitake Yoshida,et al. Desorption of carbon dioxide from fermentation broth , 1977 .
[74] P. Seeman,et al. All lipid-soluble anaesthetics protect red cells. , 1971, Nature: New biology.
[75] K. Miller,et al. The perturbation of lipid bilayers by general anesthetics: a quantitative test of the disordered lipid hypothesis. , 1980, Molecular pharmacology.
[76] D. Bendall,et al. Effects of carbon dioxide on the oxidation of succinate and reduced diphosphopyridine nucleotide by Ricinus mitochondria. , 1960, The Biochemical journal.
[77] C. Nagel,et al. INFLUENCE OF CARBON DIOXIDE UPON THE METABOLISM OF Pseudomonas aeruginosa , 1975 .
[78] D. F. Sears,et al. A Model Representing a Physiological Role of CO2 at the Cell Membrane , 1961, The Journal of general physiology.
[79] S. L. Chen,et al. Carbon dioxide inhibition of yeast growth in biomass production , 1976, Biotechnology and bioengineering.
[80] W. Cleland,et al. Kinetic and chemical mechanisms of yeast formate dehydrogenase. , 1980, Biochemistry.
[81] C. R. Benedict,et al. Fractionation of stable carbon isotopes by phosphoenolpyruvate carboxylase from c(4) plants. , 1977, Plant physiology.
[82] S. Enfors,et al. The influence of temperature on the growth inhibitory effect of carbon dioxide on Pseudomonas fragi and Bacillus cereus. , 1981, Canadian journal of microbiology.
[83] J. Trudell,et al. Asymmetric antagonistic effects of an inhalation anesthetic and high pressure on the phase transition temperature of dipalmitoyl phosphatidic acid bilayers. , 1980, Biochimica et biophysica acta.
[84] H. P. Charles,et al. Carbon dioxide as a growth factor for mutants of Escherichia coli. , 1968, Journal of general microbiology.
[85] S. Morse,et al. Physiology of Neisseria gonorrhoeae. , 1979, Advances in microbial physiology.
[86] K. Harlos,et al. Charge-induced pretransition in phosphatidylethanolamine multilayers. The occurrence of ripple structures. , 1980, Biochimica et biophysica acta.
[87] H. Shibai,et al. Effects of Oxygen and Carbon Dioxide on Inosine Fermentation , 1973 .
[88] M. Mcdaniel,et al. Effect of CO2 concentration on intracellular pH and on glycogen synthesis from glycerol and glucose in isolated perfused rat liver. , 1969, The Journal of biological chemistry.
[89] S. Simon,et al. Solubility of carbon dioxide in lipid bilayer membranes and organic solvents. , 1980, Biochimica et biophysica acta.
[90] R. J. Hall,et al. Investigation of the significance of a carbon and redox balanced to the measurement of gaseous metabolism of Saccharomyces cerevisiae , 1979, Biotechnology and bioengineering.
[91] D. L. Fox. Presumed carbaminoprotein equilibria and free energy exchanges in reversible carbon dioxide narcosis of protoplasm. , 1981, Journal of theoretical biology.
[92] S. Styring,et al. Inhibition of glycollate oxidase from parsley leaves by HCO-3. , 1979, Biochemical and biophysical research communications.
[93] J. P. Riehm,et al. d-Glucose-6-phosphate dehydrogenase from the cysts of the brine shrimp, Artemia salina leach. The effects of certain ions and coenzymes , 1980 .
[94] J. Feldman,et al. Effect of ether, chloroform and carbon dioxide on monoamine inactivation , 1976, Pharmacology Biochemistry and Behavior.
[95] F. A. Deierkauf,et al. The action of anesthetics on the phosphatide pattern of red blood cell and yeast membranes. , 1976, Biochemical pharmacology.
[96] S. Hayashida,et al. Function of the High Concentration Alcohol-producing Factor , 1974 .
[97] P. Woolley. Electrostatic interactions at charged lipid membranes. Can the lipid phase transformation affect enzyme activity through the mediation of protons? , 1977, FEBS letters.
[98] J. Wessels,et al. The Effect of Carbon Dioxide on Fruiting and on the Degradation of a Cell-wall Glucan in Schizophyllum commune , 1977 .
[99] H. Suomalainen,et al. BIOTIN AND THE METABOLISM OF BAKER'S YEAST , 1978 .
[100] P. T. Varandani,et al. A rat kidney neutral peptidase that degrades B chain of insulin, glucagon, and ACTH: purification by affinity chromatography and some properties. , 1977, Archives of biochemistry and biophysics.
[101] Z. Glinka. Induced changes in permeability of plant cell membranes to water. , 1972, Plant physiology.
[102] J. Páca,et al. Effect of aeration and carbon dioxide on cell morphology of Candida utilis , 1980, Applied and environmental microbiology.
[103] G. Seaman,et al. The Influence of pH and Ionic Strength on the Electrokinetic Stability of the Human Erythrocyte Membrane , 1960, The Journal of general physiology.
[104] K. Watson,et al. Thermal adaptation in yeast: growth temperatures, membrane lipid, and cytochrome composition of psychrophilic, mesophilic, and thermophilic yeasts , 1976, Journal of bacteriology.