Suga S, Kanno T, Nakano K, Takeo T, Dobashi Y, Wakui M
Department of Physiology, Hirosaki University School of Medicine, Japan.
Diabetes. 1997 Nov;46(11):1755-60. doi: 10.2337/diab.46.11.1755.
The whole-cell patch-clamp method was used to examine the effect of glucagon-like peptide I (GLP-I)(7-36) amide on the activation process of L-type Ca2+ channels of rat pancreatic beta-cells. After depolarization, GLP-I (1-100 nmol/l) caused action potentials in cells exposed to a glucose-free solution for 10 min. The percentage of cells producing action potential depended on the concentration of GLP-I. In some cells, GLP-I caused action potentials without the prior depolarization of the membrane. In cells exposed to the glucose-free solution for longer than 30 min, or in cells that were deprived of ATP by a means of the conventional whole-cell configuration, GLP-I (20 nmol/l) did not cause the electrical excitation. Application of GLP-I augmented the maximum Ba2+ current (IBa) through L-type Ca2+ channels and shifted the current voltage curve to the left. Values of changes in the maximum IBa depended on GLP-I concentration. Application of dibutyryl cAMP (dbcAMP, 1 mmol/l) also augmented IBa. In cells pretreated with Rp-cAMP, dbcAMP did not change the magnitude of IBa. Also in cells pretreated with Rp-cAMP, GLP-I failed to augment IBa. These results suggest that in pancreatic beta-cells, GLP-I, by a cAMP-dependent mechanism, increases opening of L-type Ca2+ channels. cAMP-dependent augmentation of Ca2+ entry as well as cAMP production itself by GLP-I plays a crucial role in controlling insulin secretion.
采用全细胞膜片钳技术研究胰高血糖素样肽I(GLP-I)(7-36)酰胺对大鼠胰腺β细胞L型Ca2+通道激活过程的影响。去极化后,GLP-I(1-100 nmol/L)可使暴露于无糖溶液10分钟的细胞产生动作电位。产生动作电位的细胞百分比取决于GLP-I的浓度。在一些细胞中,GLP-I可在膜未预先去极化的情况下引起动作电位。在暴露于无糖溶液超过30分钟的细胞中,或在通过传统全细胞模式剥夺ATP的细胞中,GLP-I(20 nmol/L)不会引起电兴奋。应用GLP-I可增加通过L型Ca2+通道的最大Ba2+电流(IBa),并使电流-电压曲线向左移动。最大IBa的变化值取决于GLP-I的浓度。应用二丁酰环磷腺苷(dbcAMP,1 mmol/L)也可增加IBa。在用Rp-cAMP预处理的细胞中,dbcAMP不会改变IBa的大小。同样,在用Rp-cAMP预处理的细胞中,GLP-I也无法增加IBa。这些结果表明,在胰腺β细胞中,GLP-I通过一种依赖cAMP的机制增加L型Ca2+通道的开放。GLP-I依赖cAMP增加Ca2+内流以及cAMP自身的产生在控制胰岛素分泌中起关键作用。