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长期饥饿期间大鼠胰高血糖素介导的肝糖原分解机制的改变

Altered mechanism of glucagon-mediated hepatic glycogenolysis during long-term starvation in the rat.

作者信息

Goldstein D E, Sutherland C A, Curnow R T

出版信息

Metabolism. 1978 Oct;27(10):1491-8. doi: 10.1016/s0026-0495(78)80021-3.

Abstract

The effect of long-term starvation on glucagon-mediated hepatic glycogenolysis was investigated in the rat in vivo. Following glucagon (50 microgram/kg i.v.) fed rats showed rapid phosphorylase activation but no change in synthase-I activities. In contrast, rats fasted 72 hr (long-term fasting) showed rapid synthase inactivation but no significant phosphorylase activation. Rats fasted 24 hr (short-term fasting) demonstrated coordinated inactivation of synthase and activation of phosphorylase. Hepatic cyclic AMP responses were greater in fasted rats. Hepatic glycogen concentrations in rats fasted 72 hr were approximately 30% of fed levels. After glucagon, comparable decrements in hepatic glycogen and increments in plasma glucose concentrations were seen in fed and 72-hr groups. The diminished responsiveness of the hepatic phosphorylase system in rats fasted 72 hr was not attributable to altered cyclic AMP-dependent protein kinase or phosphorylase kinase activities. However, the diminished responsiveness could be ascribed to diminished total phosphorylase with nearly complete activation in the basal state. In fed and fasted rats, synthase decrements after glucagon correlated closely with basal levels of synthase-I. Thus, it is proposed that the enzymatic mechanism of glucagon-mediated hepatic glycogenolysis differs in fed and fasted rats. It is also proposed that partial hepatic glycogen reaccumulation during long-term fasting could be physiologically important for glucose homeostasis.

摘要

在大鼠体内研究了长期饥饿对胰高血糖素介导的肝糖原分解的影响。给喂食的大鼠静脉注射胰高血糖素(50微克/千克)后,显示出磷酸化酶迅速激活,但合酶-I活性无变化。相反,禁食72小时(长期禁食)的大鼠显示合酶迅速失活,但磷酸化酶无明显激活。禁食24小时(短期禁食)的大鼠表现出合酶失活和磷酸化酶激活的协同作用。禁食大鼠的肝环磷酸腺苷反应更大。禁食72小时的大鼠肝糖原浓度约为喂食水平的30%。注射胰高血糖素后,喂食组和禁食72小时组的肝糖原减少和血糖浓度升高程度相当。禁食72小时的大鼠肝磷酸化酶系统反应性降低并非归因于环磷酸腺苷依赖性蛋白激酶或磷酸化酶激酶活性的改变。然而,反应性降低可归因于基础状态下几乎完全激活的总磷酸化酶减少。在喂食和禁食的大鼠中,注射胰高血糖素后合酶的减少与合酶-I的基础水平密切相关。因此,有人提出,胰高血糖素介导的肝糖原分解的酶促机制在喂食和禁食的大鼠中有所不同。还提出,长期禁食期间肝脏糖原的部分重新积累对葡萄糖稳态可能具有重要的生理意义。

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