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钙离子和鸟苷5'-[γ-硫代]三磷酸对α-毒素通透的HIT-T15细胞胰岛素分泌作用的动力学

Dynamics of Ca2+ and guanosine 5'-[gamma-thio]triphosphate action on insulin secretion from alpha-toxin-permeabilized HIT-T15 cells.

作者信息

Jonas J C, Li G, Palmer M, Weller U, Wollheim C B

机构信息

Département de Médecine, Centre Médical Universitaire, Genève, Switzerland.

出版信息

Biochem J. 1994 Jul 15;301 ( Pt 2)(Pt 2):523-9. doi: 10.1042/bj3010523.

Abstract

The time course of Ca2+ and GTP-analogue effects on insulin secretion was investigated in HIT-T15 cells permeabilized with Staphylococcus alpha-toxin. These cells responded to Ca2+ in the range 0.1-10 microM and could be used in a dynamic perifusion system because of the minimal run-down of the secretory response. High Ca2+ (10 microM) elicited a monophasic ATP-dependent stimulation of insulin secretion that reached a peak within 5 min (approximately 20-fold increase) and rapidly decreased during the subsequent 15 min to a plateau remaining above basal rates (0.1 microM Ca2+). The decrease in Ca(2+)-induced insulin secretion with time could not be attributed to decreased capacity to respond to Ca2+ after prolonged perfusion at low Ca2+ (run-down), nor to depletion of a particular secretory-granule pool. It was rather due to desensitization of the secretory machinery to Ca2+ that was not reversed by selective inhibition of the Ca2+/calmodulin-dependent kinase II with KN-62. However, an intermediate Ca2+ concentration (2 microM) increased insulin secretion to stable level without causing any desensitization. Imposed oscillations of Ca2+ (0.1-10 microM) produced phasic oscillations of insulin secretion, but did not prevent desensitization to Ca2+. Poorly hydrolysable GTP analogues increased insulin secretion at low Ca2+, whereas they strongly inhibited Ca(2+)-induced insulin secretion. By contrast, GTP did not affect basal secretion, and slightly increased Ca(2+)-evoked secretion. These results indicate the following. (1) Oscillations of insulin secretion are tightly coupled to cytosolic Ca2+ oscillations. (2) Oscillations of Ca2+ do not prevent high-Ca(2+)-induced desensitization to Ca2+; this result does not support the idea of a greater efficiency of oscillations compared with sustained Ca2+ rises in triggering exocytosis. (3) Activation of G-proteins modulates exocytosis in a bimodal manner.

摘要

在用金黄色葡萄球菌α-毒素通透处理的HIT-T15细胞中,研究了Ca2+和GTP类似物对胰岛素分泌的时间进程影响。这些细胞对0.1 - 10微摩尔范围内的Ca2+有反应,并且由于分泌反应的最小衰减,可用于动态灌流系统。高Ca2+(10微摩尔)引发了依赖ATP的单相胰岛素分泌刺激,在5分钟内达到峰值(增加约20倍),并在随后的15分钟内迅速下降至高于基础速率(0.1微摩尔Ca2+)的平台期。Ca2+诱导的胰岛素分泌随时间的减少,既不能归因于在低Ca2+下长时间灌流后对Ca2+反应能力的降低(衰减),也不能归因于特定分泌颗粒池的耗尽。这相当于是由于分泌机制对Ca2+的脱敏,而用KN - 62选择性抑制Ca2+/钙调蛋白依赖性激酶II并不能逆转这种脱敏。然而,中等Ca2+浓度(2微摩尔)将胰岛素分泌增加到稳定水平,而不会引起任何脱敏。施加的Ca2+振荡(0.1 - 10微摩尔)产生了胰岛素分泌的相位振荡,但并未阻止对Ca2+的脱敏。水解性差的GTP类似物在低Ca2+时增加胰岛素分泌,而它们强烈抑制Ca2+诱导的胰岛素分泌。相比之下,GTP不影响基础分泌,并略微增加Ca2+诱发的分泌。这些结果表明如下几点。(1)胰岛素分泌的振荡与胞质Ca2+振荡紧密耦合。(2)Ca2+振荡不能阻止高Ca2+诱导的对Ca2+的脱敏;该结果不支持与持续Ca2+升高相比,振荡在触发胞吐作用方面具有更高效率的观点。(3)G蛋白的激活以双峰方式调节胞吐作用。

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