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精氨酸诱导的胰岛素释放的刺激-分泌偶联:细胞外和细胞内pH变化的意义。

Stimulus-secretion coupling of arginine-induced insulin release: significance of changes in extracellular and intracellular pH.

作者信息

Malaisse W J, Plasman P O, Blachier F, Herchuelz A, Sener A

机构信息

Laboratory Experimental Medicine, Brussels Free University, Belgium.

出版信息

Cell Biochem Funct. 1991 Jan;9(1):1-7. doi: 10.1002/cbf.290090102.

Abstract

The possible relevance of changes in extracellular and/or intracellular pH to the insulinotropic action of L-arginine and L-homoarginine was investigated in rat pancreatic islets. A rise in extracellular pH from 7.0 to 7.4 and 7.8 augmented the secretory response to these cationic amino acids whilst failing to affect the uptake of L-arginine by islet cells and whilst decreasing the release of insulin evoked by D-glucose. Under these conditions, a qualified dissociation was also observed between secretory data and 45Ca net uptake. Moreover, at high extracellular pH, the homoarginine-induced increase in 86Rb outflow from prelabelled islets rapidly faded out, despite sustained stimulation of insulin release. The cationic amino acids failed to affect the intracellular pH of islet cells, whether in the absence or presence of D-glucose and whether at normal or abnormal extracellular pH. These findings argue against the view that the secretory response to L-arginine would be related to either a change in cytosolic pH or the accumulation of this positively charged amino acid in the beta-cell. Nevertheless, they suggest that the yet unidentified target for L-arginine and its non-metabolized analogue in islet cells displays pH-dependency with optimal responsiveness at alkaline pH.

摘要

在大鼠胰岛中研究了细胞外和/或细胞内pH值变化与L-精氨酸和L-高精氨酸促胰岛素作用之间的可能关联。细胞外pH值从7.0升至7.4和7.8增强了对这些阳离子氨基酸的分泌反应,同时不影响胰岛细胞对L-精氨酸的摄取,且降低了D-葡萄糖诱发的胰岛素释放。在这些条件下,还观察到分泌数据与45Ca净摄取之间存在一定程度的分离。此外,在高细胞外pH值时,尽管胰岛素释放持续受到刺激,但高精氨酸诱导的预标记胰岛中86Rb流出增加迅速消失。无论有无D-葡萄糖,也无论细胞外pH值正常或异常,阳离子氨基酸均不影响胰岛细胞的细胞内pH值。这些发现与以下观点相悖,即对L-精氨酸的分泌反应与细胞质pH值的变化或这种带正电荷的氨基酸在β细胞中的积累有关。然而,它们表明,胰岛细胞中L-精氨酸及其非代谢类似物尚未确定的靶点表现出pH依赖性,在碱性pH值下具有最佳反应性。

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