Blachier F, Mourtada A, Sener A, Malaisse W J
Laboratory of Experimental Medicine, Brussels Free University, Belgium.
Endocrinology. 1989 Jan;124(1):134-41. doi: 10.1210/endo-124-1-134.
In order to assess the possible role of L-arginine accumulation in islet cells as a determinant of its insulinotropic action, the uptake of L-arginine and other cationic amino acids (L-ornithine, L-homoarginine, D,L-alpha-methylornithine, D,L-alpha-difluoromethylornithine) by rat pancreatic islets was compared to the ionic and secretory responses of the islets to the same amino acids. A tight correlation was found between the net uptake of these amino acids and their capacity to stimulate 86Rb efflux, 45Ca uptake and efflux, and insulin release. In the latter respect, there was little difference between metabolized and nonmetabolized amino acids. Thus, although L-homoarginine and 4-amino-1-guanylpiperidine-4-carboxylic acid failed to act as a substrate for either arginase or amino acid aminotransferase in islet homogenates, they both stimulated 86Rb efflux, 45Ca uptake and efflux, and insulin secretion in intact islets. These findings are compatible with the view that the accumulation of these positively charged amino acids in islet cells represents an essential determinant of their secretory action. Hence, the release of insulin evoked by these amino acids could be due to depolarization of the plasma membrane with subsequent gating of voltage-sensitive Ca2+ channels and/or to some other biophysical effect, as suggested by the persistence of a sizeable secretory response to L-arginine or L-ornithine in islets perifused at a high concentrations of extracellular K+ (50 mM).
为了评估胰岛细胞中L-精氨酸积累作为其促胰岛素作用决定因素的可能作用,将大鼠胰岛对L-精氨酸和其他阳离子氨基酸(L-鸟氨酸、L-高精氨酸、D,L-α-甲基鸟氨酸、D,L-α-二氟甲基鸟氨酸)的摄取与胰岛对相同氨基酸的离子和分泌反应进行了比较。发现这些氨基酸的净摄取与其刺激86Rb外流、45Ca摄取和外流以及胰岛素释放的能力之间存在紧密相关性。在后者方面,代谢和未代谢氨基酸之间几乎没有差异。因此,尽管L-高精氨酸和4-氨基-1-胍基哌啶-4-羧酸在胰岛匀浆中不能作为精氨酸酶或氨基酸转氨酶的底物,但它们都能刺激完整胰岛中的86Rb外流、45Ca摄取和外流以及胰岛素分泌。这些发现与这样一种观点一致,即这些带正电荷的氨基酸在胰岛细胞中的积累是其分泌作用的一个重要决定因素。因此,这些氨基酸引起的胰岛素释放可能是由于质膜去极化以及随后电压敏感性Ca2+通道的开启和/或其他一些生物物理效应,正如在高细胞外K+(50 mM)浓度下灌流的胰岛中对L-精氨酸或L-鸟氨酸持续有相当大的分泌反应所表明的那样。