首页> 外文会议>NATO Advanced Research Workshop on Technological and Medical Implications of Metabolic Control Analysis Visegrad, Hungary 10-16 April 1999 >Intracellular Distribution of Glycogen Synthase: Another Regulatory Mechanism of Glycogen Metabolism?
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Intracellular Distribution of Glycogen Synthase: Another Regulatory Mechanism of Glycogen Metabolism?

机译:糖原合酶的细胞内分布:糖原代谢的另一种调控机制?

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As Joseph Larner (1990) pointed out, glycogen has been a major catalyst in the formulation of many concepts of modern biology. A number of broad principles have emerged from studies of glycogen metabolism. Thus, covalent regulation by phosphorylation was originally described as the mechanism of activation of glycogen phosphorylase. Phosphorylase kinase was the second enzyme described as being activated by this mechanism. The third enzyme known to be controlled by phosphorylation was glycogen synthase, although in this case the regulation was inverse since phosphorylation caused the inactivation of the enzyme. The discovery of cyclic AMP and the development of the intracellular messenger concept emerged from the study of the regulation of glycogen phosphorylase by glucagon and adrenaline. These studies also led tot he notion of the cascade of phosphorylation reactions. The concept and emerging significance of multiple phosphorylation also originated in the research of the control of glycogen synthase. Later, this evolved into the theory of hierarchical phosphorylation. Parallel studies on the dephosphorylation of glycogen synthase showed the ability ofinsulin to modify the activity of protein kinases and protein phosphatases. In Larner's words, "glycogen has sparked its fair share of major discoveries in biology".
机译:正如约瑟夫·拉纳(Joseph Larner,1990)所指出的那样,糖原一直是许多现代生物学概念形成过程中的主要催化剂。从糖原代谢研究中发现了许多广泛的原理。因此,最初将通过磷酸化的共价调节描述为糖原磷酸化酶激活的机制。磷酸化酶激酶是被描述为被该机制激活的第二种酶。已知受磷酸化作用控制的第三个酶是糖原合酶,尽管在这种情况下调节是相反的,因为磷酸化作用会导致该酶失活。从胰高血糖素和肾上腺素对糖原磷酸化酶的调控研究中发现了环状AMP的发现和细胞内信使概念的发展。这些研究也导致了磷酸化反应级联的概念。多个磷酸化的概念和新兴意义也起源于糖原合酶控制的研究。后来,这演变成分层磷酸化的理论。糖原合酶去磷酸化的平行研究表明胰岛素具有改变蛋白激酶和蛋白磷酸酶活性的能力。用拉纳的话说,“糖原激起了其在生物学主要发现中的应有份额”。

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