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在胰岛素和环磷酸腺苷(cAMP)拮抗剂存在的情况下对肝糖原分解的协同抑制作用。

Synergistic inhibition of hepatic glycogenolysis in the presence of insulin and a cAMP antagonist.

作者信息

Marks J S, Botelho L H

出版信息

J Biol Chem. 1986 Feb 25;261(6):2781-5.

PMID:3005264
Abstract

The effects of insulin on the ability of the specific intracellular cAMP-dependent protein kinase antagonist, the Rp diastereomer of adenosine cyclic 3',5'-phosphorothioate, to inhibit glycogenolysis induced by the Sp diastereomer was studied in hepatocytes isolated from fed rats. Addition of the cAMP agonist, (Sp)-cAMPS, to hepatocytes resulted in a concentration-dependent increase in glycogenolytic glucose production concomitant with the cAMP-dependent activation of phosphorylase and inhibition of glycogen synthase. Activity curves were shifted to the right in the presence of the cAMP antagonist, (Rp)-cAMPS. Preincubation of the hepatocytes with a maximally effective concentration of insulin did not affect the concentration of (Sp)-cAMPS required for half-maximal activation of phosphorylase but did result in a 10-fold shift in the concentration of (Sp)-cAMPS required for half-maximal inactivation of glycogen synthase. Preincubation of hepatocytes with a combination of the cAMP antagonist, (Rp)-cAMPS, and insulin resulted in synergistic inhibition of (Sp)-cAMPS-induced phosphorylase activation, glycogen synthase inactivation, and glycogenolytic glucose production. Since neither phosphorothioate diastereomer was hydrolyzed significantly during the course of the experiments, the synergistic effects of insulin are postulated to be working through a mechanism subsequent to the phosphodiesterase activation step.

摘要

在从喂食大鼠分离出的肝细胞中,研究了胰岛素对特异性细胞内cAMP依赖性蛋白激酶拮抗剂——腺苷环3',5'-硫代磷酸酯的Rp非对映体抑制Sp非对映体诱导的糖原分解能力的影响。向肝细胞中添加cAMP激动剂(Sp)-cAMPS,导致糖原分解性葡萄糖生成呈浓度依赖性增加,同时伴随着磷酸化酶的cAMP依赖性激活和糖原合酶的抑制。在cAMP拮抗剂(Rp)-cAMPS存在下,活性曲线向右移动。用最大有效浓度的胰岛素对肝细胞进行预孵育,并不影响磷酸化酶半最大激活所需的(Sp)-cAMPS浓度,但确实导致糖原合酶半最大失活所需的(Sp)-cAMPS浓度发生10倍的偏移。用cAMP拮抗剂(Rp)-cAMPS和胰岛素的组合对肝细胞进行预孵育,导致对(Sp)-cAMPS诱导的磷酸化酶激活、糖原合酶失活和糖原分解性葡萄糖生成产生协同抑制作用。由于在实验过程中两种硫代磷酸酯非对映体均未发生明显水解,因此推测胰岛素的协同作用是通过磷酸二酯酶激活步骤之后的机制发挥作用的。

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