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甲基异丁基黄嘌呤在一个不同于磷酸二酯酶的位点阻断胰岛素对环磷酸腺苷(cAMP)刺激的糖原分解的拮抗作用。支持胰岛素不敏感钙释放机制的证据。

Methylisobutylxanthine blocks insulin antagonism of cAMP-stimulated glycogenolysis at a site distinct from phosphodiesterase. Evidence favoring an insulin-insensitive calcium release mechanism.

作者信息

Gabbay R A, Lardy H A

出版信息

J Biol Chem. 1986 Mar 25;261(9):4002-7.

PMID:2419337
Abstract

The widely used phosphodiesterase inhibitor MIX (1-methyl 3-isobutyl xanthine) blocked insulin antagonism of cAMP-stimulated glycogenolysis in rat hepatocytes but other phosphodiesterase inhibitors including Ro 20-1724 had no effect. Dose-response curves for MIX potentiation of cAMP-stimulated glycogenolysis and for MIX inhibition of the effects of insulin on cAMP-stimulated glycogenolysis suggested that at higher concentrations (250 microM) MIX may act at a site other than phosphodiesterase inhibition. MIX, at 250 microM, attenuated the insulin antagonism of glucose release stimulated by 8-bromo-cAMP, an extremely poor substrate for phosphodiesterase; other phosphodiesterase inhibitors did not. The possibility that MIX acts as an adenosine antagonist interfering with a postulated role for adenosine in insulin action was examined using N6-phenylisopropyladenosine (PIA), an Ra adenosine receptor agonist which increases hepatic cAMP levels. MIX inhibited insulin antagonism of PIA-stimulated glycogenolysis under conditions where it did not act as an adenosine antagonist (MIX and Ro 20-1724 both increased the response to PIA equally). The effect of concanavalin A on cAMP-stimulated glycogenolysis was antagonized by MIX, suggesting a post-receptor site of action for MIX. MIX paradoxically increased lactate production in the presence of 8-bromo-cAMP, reminiscent of the reported actions of calcium mobilizing hormones on lactate formation in fed hepatocytes. Cytosolic free Ca2+, as measured in Quin 2-loaded cells, was increased by MIX. In cells depleted of calcium, MIX no longer blocked insulin antagonism of 8-bromo-cAMP-stimulated glucose release, suggesting that MIX may function through an insulin-insensitive release of calcium. MIX greatly potentiated the stimulation of glycogenolysis by phenylephrine but did not alter the response to vasopressin. The relationship of this effect of MIX to the mechanism of insulin action and the ability of insulin to antagonize only alpha-adrenergic responses and not those of vasopressin is discussed.

摘要

广泛使用的磷酸二酯酶抑制剂MIX(1-甲基-3-异丁基黄嘌呤)可阻断胰岛素对大鼠肝细胞中cAMP刺激的糖原分解的拮抗作用,但包括Ro 20-1724在内的其他磷酸二酯酶抑制剂则无此作用。MIX增强cAMP刺激的糖原分解以及MIX抑制胰岛素对cAMP刺激的糖原分解的作用的剂量反应曲线表明,在较高浓度(250微摩尔)时,MIX可能作用于磷酸二酯酶抑制以外的位点。250微摩尔的MIX减弱了8-溴-cAMP(一种磷酸二酯酶的极差底物)刺激的葡萄糖释放的胰岛素拮抗作用;其他磷酸二酯酶抑制剂则没有。使用N6-苯基异丙基腺苷(PIA,一种增加肝cAMP水平的Ra腺苷受体激动剂)研究了MIX作为腺苷拮抗剂干扰腺苷在胰岛素作用中假定作用的可能性。在MIX不作为腺苷拮抗剂的条件下(MIX和Ro 20-1724均同等程度地增加对PIA的反应),MIX抑制了胰岛素对PIA刺激的糖原分解的拮抗作用。伴刀豆球蛋白A对cAMP刺激的糖原分解的作用被MIX拮抗,提示MIX存在受体后作用位点。在存在8-溴-cAMP的情况下,MIX反常地增加了乳酸生成,这让人联想到钙动员激素对喂食状态下肝细胞中乳酸形成的报道作用。在负载喹啉-2的细胞中测得的胞质游离Ca2+被MIX增加。在缺钙的细胞中,MIX不再阻断胰岛素对8-溴-cAMP刺激的葡萄糖释放的拮抗作用,提示MIX可能通过对钙的胰岛素不敏感释放发挥作用。MIX极大地增强了去氧肾上腺素对糖原分解的刺激作用,但未改变对血管加压素的反应。讨论了MIX的这种作用与胰岛素作用机制的关系以及胰岛素仅拮抗α-肾上腺素能反应而不拮抗血管加压素反应的能力。

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