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禁食后再喂食高碳水化合物饮食的大鼠分离肝细胞中,胰高血糖素调节糖原代谢的能力丧失。

Inability of glucagon to regulate glycogen metabolism in rat hepatocytes isolated after fasting and refeeding high-carbohydrate diets.

作者信息

Blair J B, Kerbacher J J

出版信息

Arch Biochem Biophys. 1986 Nov 15;251(1):250-9. doi: 10.1016/0003-9861(86)90072-x.

Abstract

Studies are described which demonstrate that the ability of glucagon, epinephrine, and dibutyryl-cAMP to stimulate glycogenolysis is impaired in rat hepatocytes isolated from animals starved for 24 h and then refed a sucrose-rich diet or refed standard rat chow. The impaired regulation of glycogenolysis by glucagon was observed within 24 h after refeeding and persisted for at least 3 days. The inability of glucagon to stimulate glycogen breakdown in the refed condition appeared to be due to a suppressed activation of glycogen phosphorylase and phosphorylase b kinase by the hormone. The capacity of glucagon to regulate pyruvate kinase and glycolysis was not altered by refeeding, suggesting that the defect lies beyond interaction of the hormone at its receptor. Prolonged incubation of hepatocytes from refed rats was accompanied by depletion of glycogen reserves and was accompanied by restoration of hormonal stimulation of glycogenolysis. Addition of glycogen to cell-free extracts was found to inhibit phosphorylase b kinase but not phosphorylase. The findings of this investigation are consistent with the interpretation that high levels of glycogen present of liver after refeeding may lead to a diminished activity of phosphorylase b kinase and its hormonal regulation.

摘要

本文描述了一些研究,这些研究表明,从饥饿24小时后再喂食富含蔗糖的饮食或标准大鼠饲料的动物分离出的大鼠肝细胞中,胰高血糖素、肾上腺素和二丁酰环磷腺苷酸刺激糖原分解的能力受损。再喂食后24小时内观察到胰高血糖素对糖原分解的调节受损,并持续至少3天。在再喂食条件下,胰高血糖素无法刺激糖原分解,这似乎是由于该激素对糖原磷酸化酶和磷酸化酶b激酶的激活受到抑制。再喂食并未改变胰高血糖素调节丙酮酸激酶和糖酵解的能力,这表明缺陷存在于激素与其受体相互作用之外。对再喂食大鼠的肝细胞进行长时间孵育,伴随着糖原储备的耗尽,并伴随着糖原分解激素刺激的恢复。发现向无细胞提取物中添加糖原可抑制磷酸化酶b激酶,但不抑制磷酸化酶。本研究结果与以下解释一致,即再喂食后肝脏中存在的高水平糖原可能导致磷酸化酶b激酶活性及其激素调节减弱。

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