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在高钾培养基中,血管加压素刺激的大鼠肝细胞钙离子内流受到抑制。

Vasopressin-stimulated Ca2+ influx in rat hepatocytes is inhibited in high-K+ medium.

作者信息

Savage A L, Biffen M, Martin B R

机构信息

Department of Biochemistry, University of Cambridge, U.K.

出版信息

Biochem J. 1989 Jun 15;260(3):821-7. doi: 10.1042/bj2600821.

Abstract

We examined the effects of K+ substitution for Na+ on the response of hepatocytes to vasopressin, and on the hepatocyte plasma-membrane potential. (1) High K+ (114 mM) had no effect on the initial increase in phosphorylase a activity in response to vasopressin, but abolished the ability of the hormone to maintain increased activity beyond 10 min. With increasing concentrations a decrease in the vasopressin response was first observed at 30-50 mM-K+. (2) High K+ (114 mM) had no effect on basal 45Ca2+ influx, but abolished the ability of vasopressin to stimulate influx. This effect was also first observed at a concentration of 30-50 mM-K+. (3) Increasing K+ had little effect on the plasma-membrane potential until a concentration of 40 mM was reached. With further increases in concentration the plasma membrane was progressively depolarized. (4) Replacement of Na+ with N-methyl-D-glucamine+ depolarized the plasma membrane to a much smaller extent than did replacement with K+, and was also much less effective in inhibiting the vasopressin response. (5) The plasma-membrane potential was restored to near the control value by resuspending cells in normal-K+ medium after exposure to high-K+ medium. The effects of vasopressin on phosphorylase activity were also restored. (6) We conclude that the Ca2+ channels responsible for vasopressin-stimulated Ca2+ influx are closed by depolarization of the plasma membrane.

摘要

我们研究了用钾离子替代钠离子对肝细胞对血管加压素的反应以及对肝细胞质膜电位的影响。(1)高钾(114 mM)对血管加压素引起的磷酸化酶a活性的初始增加没有影响,但消除了该激素在10分钟后维持活性增加的能力。随着浓度的增加,在30 - 50 mM - K +时首次观察到血管加压素反应的降低。(2)高钾(114 mM)对基础45Ca2 +内流没有影响,但消除了血管加压素刺激内流的能力。这种效应也在30 - 50 mM - K +的浓度下首次观察到。(3)在达到40 mM浓度之前,增加钾离子对质膜电位影响很小。随着浓度进一步增加,质膜逐渐去极化。(4)用N - 甲基 - D - 葡糖胺 + 替代钠离子使质膜去极化的程度比用钾离子替代小得多,并且在抑制血管加压素反应方面也效率低得多。(5)在暴露于高钾培养基后,将细胞重悬于正常钾培养基中,质膜电位恢复到接近对照值。血管加压素对磷酸化酶活性的影响也得以恢复。(6)我们得出结论,负责血管加压素刺激的Ca2 +内流的Ca2 +通道因质膜去极化而关闭。

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