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血管加压素对胰岛素分泌细胞系中电压敏感性钙电流的激活作用。

Activation of voltage-sensitive Ca2+ currents by vasopressin in an insulin-secreting cell line.

作者信息

Thorn P, Petersen O H

机构信息

MRC Secretory Control Research Group, Physiological Laboratory, University of Liverpool, England.

出版信息

J Membr Biol. 1991 Oct;124(1):63-71. doi: 10.1007/BF01871365.

Abstract

The effect of vasopressin on voltage-sensitive Ca2+ currents in the rat insulinoma cell line RINm5F has been investigated in patch-clamp whole-cell and single-channel current recording experiments. In the whole-cell recording configuration the dominant inward current in the presence of tetrodotoxin was noninactivating and had a high voltage threshold. This current was much enhanced when external Ca2+ was replaced by Ba2+ and was blocked by 1 microM nifedipine. It can therefore be classified as an L-current. Vasopressin enhanced the L-current without changing the voltage threshold of activation or the voltage at which the peak current was observed. Vasopressin effects were seen at concentrations as low as 0.01 nM, and the maximal effect was observed at about 1 nM. In higher concentrations the vasopressin effects were weaker, with effects at 50 nM of about the same magnitude as at 0.01 nM. In single-channel current recording experiments carried out with the cell-attached configuration there were no effects on single L-channel currents when vasopressin was added to the bath solution, but in experiments in which vasopressin (5 nM) was infused into the patch pipette a marked increase in the apparent channel open state probability was observed. We conclude that vasopressin, a peptide that is known to markedly enhance glucose-evoked insulin secretion, stimulates opening of the voltage-sensitive Ca2+ channels in insulin-secreting cells.

摘要

通过膜片钳全细胞和单通道电流记录实验,研究了血管加压素对大鼠胰岛素瘤细胞系RINm5F中电压敏感性Ca2+电流的影响。在全细胞记录模式下,在存在河豚毒素的情况下,主要的内向电流是非失活的,并且具有高电压阈值。当外部Ca2+被Ba2+取代时,该电流显著增强,并被1μM硝苯地平阻断。因此,它可被归类为L电流。血管加压素增强了L电流,而不改变激活的电压阈值或观察到峰值电流的电压。血管加压素在低至0.01 nM的浓度下即可产生作用,在约1 nM时观察到最大作用。在更高浓度下,血管加压素的作用较弱,50 nM时的作用与0.01 nM时大致相同。在采用细胞贴附模式进行的单通道电流记录实验中,当将血管加压素添加到浴液中时,对单个L通道电流没有影响,但在将血管加压素(5 nM)注入膜片吸管的实验中,观察到明显的通道开放状态概率增加。我们得出结论,血管加压素是一种已知能显著增强葡萄糖诱发胰岛素分泌的肽,它能刺激胰岛素分泌细胞中电压敏感性Ca2+通道的开放。

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