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葡萄糖分泌刺激期间胰岛磷酸盐含量的变化

Alterations in pancreatic islet phosphate content during secretory stimulation with glucose.

作者信息

Bukowiecki L, Trus M, Matschinsky F M, Freinkel N

出版信息

Biochim Biophys Acta. 1979 Mar 22;583(3):370-7. doi: 10.1016/0304-4165(79)90461-6.

Abstract

Isolated rat pancreatic islets were perifused and analyzed for phosphate content immediately following the transient increase in the efflux of orthophosphate which occurs when insulin secretion is stimulated by glucose. In some instances, islets were perifused directly following isolation to minimize preparative delay; in others, islets were prelabeled during incubation with [32P]orthophosphate for 90 min prior to perifusion. In both experimental situations, total islet phosphate content declined 40--50% following exposure to stimulating concentrations of glucose and initiation of enhanced insulin release. In the experiments with prelabeled islets, tissue content of [32P]orthophosphate fell to a similar extent so that the specific radioactivity of islet orthophosphate was unaffected. Inhibited of heightened insulin release with Ni2+ did not modify the decrements in total or radioactive tissue orthophosphate, thus indicating that these responses to islet stimulation reflect events which are proximal to activated exocytosis. Simultaneous analyses for tissue ATP and ADP demonstrated that the efflux in orthophosphate and reduction in tissue orthophosphate content were not mediated via net changes in islet adenine nucleotides. The observations represent the first documentation that a net reduction of tissue inorganic phosphate is one of the early components of stimulus-secretion coupling in isolated pancreatic islets.

摘要

分离的大鼠胰岛进行了灌流,并在葡萄糖刺激胰岛素分泌时正磷酸盐外流短暂增加后,立即分析其磷酸盐含量。在某些情况下,胰岛在分离后直接进行灌流,以尽量减少制备延迟;在其他情况下,胰岛在灌流前用[32P]正磷酸盐孵育90分钟进行预标记。在这两种实验情况下,暴露于刺激浓度的葡萄糖并开始增强胰岛素释放后,胰岛总磷酸盐含量下降了40%-50%。在预标记胰岛的实验中,[32P]正磷酸盐的组织含量也下降到类似程度,因此胰岛正磷酸盐的比放射性未受影响。用Ni2+抑制增强的胰岛素释放并没有改变组织总磷酸盐或放射性磷酸盐的减少,这表明这些对胰岛刺激的反应反映了靠近激活的胞吐作用的事件。对组织ATP和ADP的同时分析表明,正磷酸盐的外流和组织磷酸盐含量的减少不是通过胰岛腺嘌呤核苷酸的净变化介导的。这些观察结果首次证明,组织无机磷酸盐的净减少是分离的胰岛中刺激-分泌偶联的早期组成部分之一。

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