Biochemical Adaptation
Peter W. Hochachka, George N. Somero
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Naturwissenschaften, Medizin, Informatik, Technik / Biochemie, Biophysik
Beschreibung
This book discusses biochemical adaptation to environments from freezing polar oceans to boiling hot springs, and under hydrostatic pressures up to 1,000 times that at sea level.
Originally published in 1984.
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Kundenbewertungen
Bohr effect, Amino acid, Dehydrogenase, Insulin, Anabolism, Glycolysis, Phosphagen, Carnitine, Glycerol, Hofmeister series, Fatty acid, Glucose-6-phosphate dehydrogenase, Thermoregulation, Substrate-level phosphorylation, Redox, Organism, Lysine, Deep sea, Nicotinamide adenine dinucleotide, Peroxidase, Ketosis, Phospholipid, Pyruvic acid, Detergent, Oxidative deamination, Acid–base homeostasis, Glycogen, Catabolism, Mitochondrion, Cofactor (biochemistry), Protein turnover, Gluconeogenesis, Proofreading (biology), Lipid, Pyruvate carboxylase, Metabolism, Isozyme, Hibernation, Catalase, Phosphofructokinase, Arginine, Alcohol dehydrogenase, Dissociation constant, Futile cycle, Lipolysis, Glycogen phosphorylase, Muscle, Aminooxyacetic acid, Anaerobic glycolysis, Flavin adenine dinucleotide, Glucagon, Regulatory enzyme, Antifreeze, Catalysis, Carbohydrate, Cellular respiration, Glucose, Glyceraldehyde 3-phosphate dehydrogenase, Mitochondrial matrix, Hemoglobin, Hill equation (biochemistry), Enzyme, ATPase, Fermentation, Obligate, Protein, Obligate anaerobe, Urea, Lactic acid, Histidine