首页> 外文期刊>The biochemical journal >Stimulation of glucose transport in rat adipocytes by insulin, adenosine, nicotinic acid and hydrogen peroxide. Role of adenosine 3′:5′-cyclic monophosphate
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Stimulation of glucose transport in rat adipocytes by insulin, adenosine, nicotinic acid and hydrogen peroxide. Role of adenosine 3′:5′-cyclic monophosphate

机译:胰岛素,腺苷,烟酸和过氧化氢鼠大鼠脂肪细胞中葡萄糖运输的刺激。腺苷3'的作用:5'-环状二磷酸盐

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pGlucose transport into adipocytes of the rat was measured by monitoring the conversion of [1-sup14/supC]glucose into sup14/supCOsub2/sub. Glucose transport was made rate-limiting by increasing the flux through the pentose phosphate pathway with phenazine methosulphate, an agent that rapidly reoxidizes NADPH. Under these conditions, the observed rate of glucose disappearance from the incubation medium was about 20% higher than the rate of conversion of the C-1 of glucose into sup14/supCOsub2/sub. Apparent rates of glucose transport were significantly increased by insulin, Hsub2/subOsub2/sub, adenosine and nicotinic acid. Stimulation of the apparent rate of glucose transport by insulin was dependent on adipocyte concentration, the hormone being most effective at relatively high cell concentrations. Adenosine and nicotinic acid further enhanced the maximum stimulation of glucose transport by insulin. Potentiation of insulin action by adenosine was more pronounced at lower cell concentrations. At relatively high cell concentrations the stimulatory action of insulin was markedly decreased by adenosine deaminase. Stimulation of apparent rates of glucose transport by the compounds noted above were antagonized by agents that increased intracellular cyclic AMP concentrations (theophylline and isoprenaline) and by dibutyryl cyclic AMP. Intracellular concentrations of cyclic AMP were significantly lowered when adipocytes were incubated with insulin, Hsub2/subOsub2/sub, adenosine or nicotinic acid. These effects were observed under basal conditions or when intracellular cyclic AMP concentrations were elevated by theophylline or isoprenaline. On the basis of the above data, we suggest that insulin, Hsub2/subOsub2/sub, adenosine and nicotinic acid may all stimulate glucose transport in rat adipocytes by lowering the intracellular cyclic AMP concentration. These data therefore support the hypothesis that cyclic AMP inhibits glucose transport in rat adipocytes./p
机译:通过将[1- 14-sup> c]葡萄糖转化为 14-sup> co <​​sub> 2 ,测量大鼠脂肪细胞的葡萄糖输送到大鼠的脂肪细胞。通过将磷酸磷酸硅酸盐的戊烷途径增加助焊剂,葡萄糖转运通过苯脲氨基磺酸盐,迅速再氧化NADPH的试剂来实现血糖率限制。在这些条件下,从孵育培养基中观察到的葡萄糖消失率高于葡萄糖C-1转化为 14-/ sup> co <​​sub> 2 的速率高约20%。胰岛素,H 2 ,腺苷和烟酸显着增加葡萄糖转运的表观速率显着增加。通过胰岛素刺激葡萄糖输送的表观速率取决于脂肪细胞浓度,激素在相对高的细胞浓度下最有效。腺苷和烟酸进一步增强了胰岛素的最大刺激葡萄糖输送。在较低的细胞浓度下,腺苷的胰岛素作用的增强更加明显。在较高的细胞浓度下,腺苷脱氨酰酶显着降低胰岛素的刺激作用。通过增加细胞内环状AMP浓度(Therophylline和异丙肾上腺素)和Dibutylyl环形放大器的药剂拮抗上述化合物对上述化合物的表观率的刺激。当与胰岛素一起温育脂肪细胞,H 2 O 2 ,腺苷或烟酸时,环状辐射细胞的细胞内浓度显着降低。在基础条件下观察到这些效果,或者当细胞内的环状AMP浓度被茶碱或异丙酚升高时。在上述数据的基础上,我们建议胰岛素,H 2 ,腺苷和烟酸,腺苷和烟酸可以通过降低细胞内环形放大器来刺激大鼠脂肪细胞中的葡萄糖输送专注。因此,这些数据支持循环AMP抑制大鼠脂肪细胞中葡萄糖输送的假设。

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