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Titlebook: GAPDH: Biological Properties and Diversity; Norbert W. Seidler Book 2013 The Editor(s) (if applicable) and The Author(s), under exclusive

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https://doi.org/10.1007/978-3-663-10942-6onstrated that GAPDH normally regulates the function of GABA (type A) receptor. In light of these literature observations and some less direct findings, there is a discussion on the putative role of GAPDH in anesthesia. The binding site of inhaled anesthetics is described from literature reports on
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GAPDH and Intermediary Metabolism,ty of GAPDH in order to maintain adequate glycolytic flux. Even the primitive archaea rely on GAPDH in a pivotal step in the Entner-Doudoroff pathway, which is a series of reactions that resembles glycolysis. GAPDH catalyzes the sixth reaction of glycolysis in eukaryotic cells and represents a regul
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Compartmentation of GAPDH,d to very specific cell compartments. This chapter describes the utilization of GAPDH’s enzymatic function for focal demands (i.e. ATP/ADP and NAD./NADH), and offers a speculative role for GAPDH as perhaps moderating local concentrations of inorganic phosphate and hydrogen ions (i.e. co-substrate an
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Functional Diversity,does not necessarily reflect a finite number of biochemical processes. The concept of ‘gene sharing’ proposes that a single protein can have alternate functions that are typically attributed to other proteins. GAPDH appears to play this role quite well in that it exhibits more than one function. GAP
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GAPDH, as a Virulence Factor, host. These molecules, or virulence factors, enable pathogens to colonize the host through several mechanisms. Some molecules offer the pathogen an advantage through better adhesion to host tissues, or superior invasive capability. Some allow the pathogen to evade or suppress the host’s immune syst
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