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Titlebook: Covalent Catalysis by Enzymes; Leonard B. Spector Book 1982 Springer-Verlag New York, Inc. 1982 ATP.Alanin.Aspartat.Catalysis.Coenzym.DNA.

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Wege ins Erwachsenenalter in Europa,The ligases (or synthetases) form the least numerous of the six major classes of enzymes (cf. Table 8.1, p. 226). Accordingly, Table 7.1 at the end of the present chapter numbers only thirty enzymes; yet these amount to 33% of all the ligases recognized by the Enzyme Commission.
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Ligases,The ligases (or synthetases) form the least numerous of the six major classes of enzymes (cf. Table 8.1, p. 226). Accordingly, Table 7.1 at the end of the present chapter numbers only thirty enzymes; yet these amount to 33% of all the ligases recognized by the Enzyme Commission.
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The Thesis,joined to its substrate or a fragment thereof. There are two main reasons for believing this. One is that the two other kinds of chemical catalysis—nonenzymic catalysis in solution and heterogeneous catalysis on a solid surface—proceed in just this way. The other reason rests on a substantial body o
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Oxidoreductases,ps—NAD, flavin, heme, pterin, a metal ion—or a built-in, redox-active disulfide function. These groups engage in the detailed process of electron transport between the donor and acceptor substrates. Mounting evidence upholds the view that the transfer of electrons between the holoenzyme, on the one
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Hydrolases,tion. But in at least a few cases it looks as if water must undergo an activation by the enzyme before it can accept the transferring group. The few instances of water activation we know of all involve coordination of water to a metal ion held by the enzyme in a prosthetic capacity. Whether enzymes
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