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葡萄糖诱导的胰岛素释放的刺激-分泌偶联。XXXV. 代谢事件与阳离子事件之间的联系。

The stimulus-secretion coupling of glucose-induced insulin release. XXXV. The links between metabolic and cationic events.

作者信息

Malaisse W J, Hutton J C, Kawazu S, Herchuelz A, Valverde I, Sener A

出版信息

Diabetologia. 1979 May;16(5):331-41. doi: 10.1007/BF01223623.

Abstract

When isolated rat islets were exposed to glucose, the concentrations of NADH and NADPH, and the NADH/NAD+ and NADPH/NADP+ ratios were increased. The dose-response curve resembled that characterising the glucose-induced secondary rise in 45Ca efflux, displaying a sigmoidal pattern with a half-maximal value at glucose 7.5 mmol/l. The glucose-induced increase in NAD(P)H was detectable within 1 min of exposure to the sugar. Except for the fall in ATP concentration and ATP/ADP ratio found at very low glucose concentrations (zero to 1.7 mmol/l) no effect of glucose (2.8-27.8 mmol/l) upon the steady-state concentration of adenine nucleotides was observed. However, a stepwise increase in glucose concentration provoked a dramatic and transient fall in the ATP concentration, followed by a sustained increase in both O2 consumption and oxidation of exogenous + endogenous nutrients. This may be essential to meet the energy requirements in the stimulated B-cell. Although no significant effect of glucose upon intracellular pH was detected by the 5,5-dimethyloxazolidine-2,4-dione method, the net release of H+ was markedly increased by glucose, with a hyperbolic dose-response curve (half-maximal response at glucose 2.9 mmol/l) similar to that characterising the glucose-induced initial fall in 45Ca efflux. It is proposed that the generation of both NAD(P)H and H+ participates in the coupling of glucose metabolism to distal events in the secretory sequence, especially the ionophoretic process of Ca2+ inward and outward transport, and that changes in these parameters occur in concert with an increased turn-over rate of high-energy phosphate intermediates.

摘要

当分离的大鼠胰岛暴露于葡萄糖时,NADH和NADPH的浓度以及NADH/NAD⁺和NADPH/NADP⁺的比值会升高。剂量反应曲线类似于表征葡萄糖诱导的⁴⁵Ca外流二次升高的曲线,呈现出S形模式,在葡萄糖浓度为7.5 mmol/L时达到半最大值。在接触葡萄糖1分钟内即可检测到葡萄糖诱导的NAD(P)H增加。除了在极低葡萄糖浓度(0至1.7 mmol/L)下发现ATP浓度和ATP/ADP比值下降外,未观察到葡萄糖(2.8 - 27.8 mmol/L)对腺嘌呤核苷酸稳态浓度的影响。然而,葡萄糖浓度的逐步增加会引发ATP浓度急剧且短暂的下降,随后氧气消耗以及外源性 + 内源性营养物质的氧化持续增加。这对于满足受刺激的B细胞的能量需求可能至关重要。尽管用5,5 - 二甲基恶唑烷 - 2,4 - 二酮方法未检测到葡萄糖对细胞内pH有显著影响,但葡萄糖会使H⁺的净释放显著增加,其剂量反应曲线呈双曲线形(在葡萄糖浓度为2.9 mmol/L时达到半最大反应),类似于表征葡萄糖诱导的⁴⁵Ca外流初始下降的曲线。有人提出,NAD(P)H和H⁺的生成均参与葡萄糖代谢与分泌序列中远端事件的偶联,特别是Ca²⁺内流和外流的离子载体过程,并且这些参数的变化与高能磷酸中间产物周转率的增加同步发生。

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