Borowitz J L, Matthews E K
J Cell Sci. 1980 Feb;41:233-43. doi: 10.1242/jcs.41.1.233.
The distribution and exchangeability of calcium within subcellular compartments of rat pancreatic islet cells was determined in pulse-chase experiments following isotopic labelling with 45Ca2+. In unstimulated islets the mitochondrial fraction showed the greatest, and the insulin secretory granule fraction the least, uptake of 45Ca2+; subsequently the rate of loss from each compartment during 120 min was in the order mitochondrial greater than microsomal greater than secretory granule fraction. On exposure to D-glucose, 16.8 mM, the 45Ca labelling of all 3 subcellular compartments was increased after 5 and 30 min stimulation. In contrast, theophylline 10 mM caused a significant decrease in mitochondrial 45Ca content with little effect on other compartments. These results are discussed in relation to the importance of calcium disposition, exchangeability, and mobility for the initiation and control of insulin secretion.
在用(^{45}Ca^{2 +})进行同位素标记后的脉冲追踪实验中,测定了大鼠胰岛细胞亚细胞区室中钙的分布和交换性。在未受刺激的胰岛中,线粒体部分对(^{45}Ca^{2 +})的摄取量最大,胰岛素分泌颗粒部分的摄取量最小;随后,在120分钟内每个区室的钙流失速率顺序为线粒体部分大于微粒体部分大于分泌颗粒部分。暴露于16.8 mM的D - 葡萄糖后,刺激5分钟和30分钟后,所有3个亚细胞区室的(^{45}Ca)标记均增加。相比之下,10 mM的茶碱导致线粒体(^{45}Ca)含量显著降低,而对其他区室影响较小。结合钙的分布、交换性和流动性对胰岛素分泌起始和控制的重要性,对这些结果进行了讨论。