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Titlebook: Chemical Relaxation in Molecular Biology; Israel Pecht,Rudolf Rigler Book 1977 Springer-Verlag Berlin · Heidelberg 1977 Molekularbiologie.

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Introduction and Literature Overview,Glutamate dehydrogenase catalyzes the reversible oxidative deamination of L-glutamate to α-ketoglutarate and ammonia with pyridine nucleotides as coenzyme.The above reaction plays a key role in linking nitrogen metabolism to the tricarboxylic acid cycle (Fig. 1).
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Dynamics of Proton Transfer in Solution,Proton transfer reactions in principle belong to the simplest possible chemical processes, since only a naked proton is exchanged between the two molecules concerned.
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Glutamate Dehydrogenase Self-Assembly. An Application of the Light Scattering Temperature-Jump TechGlutamate dehydrogenase catalyzes the reversible oxidative deamination of L-glutamate to α-ketoglutarate and ammonia with pyridine nucleotides as coenzyme.The above reaction plays a key role in linking nitrogen metabolism to the tricarboxylic acid cycle (Fig. 1).
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Multi-Level Lot-Sizing Problemss concerning replication, transcription and translation remain to be answered. In particular, the high accuracy of the information transfer observed in living organisms is very poorly understood. A first step towards an understanding of these processes is the investigation of elementary reactions in
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Production Planning Models and Systemsrom yeast (tRNA.) has emerged. The finding that most of the hydrogen bonds between loop and stem regions which stabilize the tertiary structure of tRNA. involve bases of the invariable parts of the primary sequences of tRNA suggests a similarity of the tertiary structure of all tRNAs. It is generall
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