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氨基酸对胰腺β细胞的膜电位和⁸⁶Rb⁺通量的影响。

Effects of amino acids on membrane potential and 86Rb+ fluxes in pancreatic beta-cells.

作者信息

Henquin J C, Meissner H P

出版信息

Am J Physiol. 1981 Mar;240(3):E245-52. doi: 10.1152/ajpendo.1981.240.3.E245.

Abstract

The membrane potential of beta-cells was studied with microelectrodes in mouse islets and their potassium permeability was evaluated by measuring 86Rb+ fluxes in rat islets. In the absence of glucose, L-leucine, its metabolite ketoisocaproate, and its nonmetabolized analogue 2-aminonorbornane-2-carboxylic acid (BCH) depolarized beta-cells and triggered bursts of electrical activity like glucose. The effect of leucine was weak, but was potentiated by a low concentration of glucose or by theophylline; the effect of ketoisocaproate was stronger and faster than that of an equimolar concentration of glucose. Arginine alone produced only a fast depolarization of beta-cells, insufficient to trigger electrical activity. Leucine and arginine potentiated the activity induced by glucose. In a glucose-free medium, alanine only slightly depolarized beta-cells, whereas isoleucine and phenylalanine had no effect. Leucine, ketoisocaproate, and BCH reversibly decreased 86Rb+ efflux from islets perifused in the absence of glucose and increased 86Rb+ uptake. By contrast, both in the absence or presence of glucose, arginine increased 86Rb+ efflux and decreased 86Rb+ uptake. It is proposed that leucine, ketoisocaproate, and BCH, as glucose, depolarize beta-cells by decreasing their potassium permeability, whereas arginine acts differently. The appearance of bursts of electrical activity with secretagogues unrelated to glucose suggests that they reflect an intrinsic property of the beta-cell membrane.

摘要

用微电极研究了小鼠胰岛中β细胞的膜电位,并通过测量大鼠胰岛中86Rb+通量评估了其钾通透性。在无葡萄糖的情况下,L-亮氨酸、其代谢产物酮异己酸及其非代谢类似物2-氨基降冰片烷-2-羧酸(BCH)使β细胞去极化,并引发类似于葡萄糖的电活动爆发。亮氨酸的作用较弱,但可被低浓度葡萄糖或茶碱增强;酮异己酸的作用比等摩尔浓度的葡萄糖更强、更快。单独的精氨酸仅使β细胞快速去极化,不足以引发电活动。亮氨酸和精氨酸增强了葡萄糖诱导的活性。在无葡萄糖的培养基中,丙氨酸仅使β细胞轻微去极化,而异亮氨酸和苯丙氨酸则无作用。亮氨酸、酮异己酸和BCH可逆地减少了无葡萄糖灌注的胰岛中86Rb+的外流,并增加了86Rb+的摄取。相比之下,无论有无葡萄糖,精氨酸均增加86Rb+的外流并减少86Rb+的摄取。有人提出,亮氨酸、酮异己酸和BCH与葡萄糖一样,通过降低β细胞的钾通透性使其去极化,而精氨酸的作用则不同。与葡萄糖无关的促分泌剂引发电活动爆发表明,它们反映了β细胞膜的一种内在特性。

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