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5-碘杀结核菌素与前糖原合成素:禁食大鼠肝细胞中两种糖原生成化合物的比较

5-Iodotubercidin and proglycosyn: a comparison of two glycogenic compounds in hepatocytes from fasted rats.

作者信息

Flückiger-Isler R, Kux E, Walter P

出版信息

Biochim Biophys Acta. 1996 Apr 24;1311(2):77-84. doi: 10.1016/0167-4889(95)00196-4.

Abstract

5-Iodotubercidin (Itu) and proglycosyn (Pro) have similar glycogenic properties. To compare their mechanisms of action, we tested them in hepatocytes from fasted rats. We show that both compounds are similar in that they stimulated glycogen synthesis, increased the concentration of synthase a, decreased that of phosphorylase a and lowered the concentration of F-2,6-P2 in the presence of glucose, lactate-pyruvate and amino acids. However, when amino acids were absent, Pro was the better stimulator of glycogenesis than Itu and in combination they elevated glycogen and synthase a concentrations synergistically. Further they differ in that (1) Itu enhanced the levels of cyclic AMP whereas Pro did not; (2) Pro depressed glucose production from gluconeogenic substrates, whereas Itu stimulated this process; (3) the inhibition of F-2,6-P2 formation and glycolysis by Pro became much weaker than that by Itu when glucose concentrations were raised from 10 to 20 mM. Inhibition of glycolysis but not that of glycogen synthesis was partly due to a phosphorylated metabolite of Itu. The present study indicates that despite their similar glycogenic effects, Itu and Pro do not share a common mechanism of action. Further, the inhibition of glycolysis and F-2,6-P2 formation by Itu cannot be explained if it acts solely as a general inhibitor of protein kinases.

摘要

5-碘结核菌素(Itu)和前糖原合成素(Pro)具有相似的糖原生成特性。为了比较它们的作用机制,我们在禁食大鼠的肝细胞中对它们进行了测试。我们发现,这两种化合物的相似之处在于,在葡萄糖、乳酸-丙酮酸和氨基酸存在的情况下,它们都能刺激糖原合成,增加合成酶a的浓度,降低磷酸化酶a的浓度,并降低F-2,6-P2的浓度。然而,当氨基酸缺乏时,Pro比Itu更能刺激糖原生成,并且它们联合使用时能协同提高糖原和合成酶a的浓度。此外,它们的不同之处在于:(1)Itu能提高环磷酸腺苷(cAMP)水平,而Pro则不能;(2)Pro抑制糖异生底物生成葡萄糖,而Itu则刺激这一过程;(3)当葡萄糖浓度从10 mM提高到20 mM时,Pro对F-2,6-P2形成和糖酵解的抑制作用比Itu弱得多。糖酵解的抑制而非糖原合成的抑制部分归因于Itu的一种磷酸化代谢产物。本研究表明,尽管Itu和Pro具有相似的糖原生成作用,但它们并不具有共同的作用机制。此外,如果Itu仅作为蛋白激酶的一般抑制剂起作用,那么它对糖酵解和F-2,6-P2形成的抑制作用就无法得到解释。

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