磷酸化酶激酶对磷酸酶活性的调控:骨骼肌蛋白磷酸化和去磷酸化的同时控制。

P Gergely, G Bot
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引用次数: 0

摘要

兔骨骼肌磷酸化酶激酶抑制磷酸化蛋白磷酸酶对磷酸化酶a的去磷酸化作用。环amp依赖性蛋白激酶对磷酸化酶激酶的磷酸化(激活)大大增强了这种抑制作用。因此,磷酸化酶激酶以可逆的方式抑制磷酸化蛋白磷酸酶(Gergely et al. (1976) biochem。Biophys。学报429(809-816)。本文研究了不同部位肌肉提取物和不同配体存在时,磷酸化酶激酶对磷酸蛋白磷酸酶活性的调节。磷酸化酶激酶的存在也影响了配体对磷酸酶活性的控制。磷酸化酶激酶几乎抵消了AMP的抑制作用,但对葡萄糖、葡萄糖6-磷酸和咖啡因的激活作用几乎没有影响。钙调素、糖原和磷酸化酶b(磷酸化酶激酶的效应物)不影响磷酸化酶激酶的抑制作用。肌肉提取物的部分也显示了磷酸化酶激酶的调节作用。这些馏分含有相当数量的磷酸化酶激酶和磷酸酶。磷酸酶活性被Mg++和ATP引发的磷酸化反应所抑制。这些组分中不存在热稳定抑制剂,因此对磷酸酶的短暂抑制可能归因于内源性磷酸化酶激酶的磷酸化。在磷酸化酶激酶和磷酸酶之间的引入导致AMP敏感性的丧失,即AMP没有抑制这些部分的磷酸酶活性。我们的研究结果表明,磷酸化酶激酶的磷酸化在酶活性磷酸化酶a的形成和抑制磷酸化酶a的去磷酸化方面同样重要。这两种作用的结果是磷酸化酶a水平的升高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation by phosphorylase kinase of phosphoprotein phosphatase activity: simultaneous control of protein phosphorylation and dephosphorylation in skeletal muscle.

Phosphorylase kinase from rabbit skeletal muscle inhibited the dephosphorylation of phosphorylase a by phosphoprotein phosphatase. Phosphorylation (activation) of phosphorylase kinase by cyclic AMP-dependent protein kinase greatly increased this inhibitory effect. Thus, phosphoprotein phosphatase is inhibited by phosphorylase kinase in a reversible manner (Gergely et al. (1976) Biochim. Biophys. Acta 429 809-816). In this paper the regulation by phosphorylase kinase at phosphoprotein phosphatase activity in different fractions of muscle extract and in the presence of various ligands has been investigated. The presence of phosphorylase kinase also affected the ligand control of phosphatase activity. Phosphorylase kinase almost cancelled the inhibitory effect of AMP but hardly influenced the activating effect of glucose, glucose 6-phosphate and caffeine. Calmodulin, glycogen and phosphorylase b (effectors of phosphorylase kinase) did not influence the inhibitory effect of phosphorylase kinase. Fractions of muscle extract also demonstrated the regulatory role of phosphorylase kinase. These fractions contained considerable amounts of phosphorylase kinase and phosphatase. Phosphatase activity was inhibited by phosphorylation reactions triggered by Mg++ and ATP. Heat-stable inhibitors were absent from these fractions, therefore the transient inhibition of phosphatase could be attributed to the phosphorylation of endogenous phosphorylase kinase. The introduction between phosphorylase kinase and phosphatase resulted in a loss of AMP sensitivity, i.e. AMP did not inhibit the activity of phosphatase in those fractions. Our results imply that the phosphorylation of phosphorylase kinase is equally important both in the formation of enzymatically active phosphorylase a and in the inhibition of dephosphorylation of phosphorylase a. The consequence of these two effects is the elevated level of phosphorylase a.

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