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Titlebook: Comparative Animal Biochemistry; Klaus Urich Textbook 1994 Springer-Verlag Berlin Heidelberg 1994 ATP.Biochemie.Biochemistry.Evolution.met

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Glycolysis, in the provision of energy under aerobic conditions. In contrast to other substrates, however, carbohydrates can also serve as a source of energy under anaerobic conditions. The reactions and end products of anaerobic carbohydrate catabolism vary greatly within the animal kingdom, and thus provide
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Sterols and Steroids, and they bind and condense the phospholipid bilayer. The outer cell membrane is particularly rich in sterols, with a molar ratio of sterols to phospholipids of 0.8–0.1, compared with the usual value of 0.1–0.3 for intracellular membranes. The parent substance of all sterols is cholesterol (Fig. 16.
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Oxidative Metabolism,gen atoms are transferred to one or more consecutively activated acceptors. The primary acceptor must always be reoxidized, whilst the final acceptor accumulates in the reduced form. Oxygen is the ideal terminal acceptor because its reduction product, water, can be accumulated without harm. Under ae
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recognize organisms. an extraordinary variation in metabolites and To provide the biochemist with a ready over­ processes superimposed upon the basic biochem­ view of the structural diversity of animals, the book includes a simplified version of animal sys­ ical system of animals. Each species, each
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Ester Hydrolases, ATPases and Carboanhydrases,terases and nucleases that are specific for cAMP and cGMP, as well as the ATPases that cleave phosphoric acid anhydride bonds. The ion-transporting ATPases will be discussed together with comparative biochemical data on ion channels. The chapter ends with a discussion of carboanhydrases.
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