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首页> 外文期刊>Biochemical and Biophysical Research Communications >Pattern of rise in subplasma membrane Ca2+ concentration determines type of fusing insulin granules in pancreatic beta cells.
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Pattern of rise in subplasma membrane Ca2+ concentration determines type of fusing insulin granules in pancreatic beta cells.

机译:质膜Ca2 +浓度升高的模式决定了胰岛β细胞中融合胰岛素颗粒的类型。

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摘要

We simultaneously analyzed insulin granule fusion with insulin fused to green fluorescent protein and the subplasma membrane Ca2+ concentration ([Ca2+](PM)) with the Ca2+ indicator Fura Red in rat beta cells by dual-color total internal reflection fluorescence microscopy. We found that rapid and marked elevation in [Ca2+](PM) caused insulin granule fusion mostly from previously docked granules during the high KCl-evoked release and high glucose-evoked first phase release. In contrast, the slow and sustained elevation in [Ca2+](PM) induced fusion from newcomers translocated from the internal pool during the low KCl-evoked release and glucose-evoked second phase release. These data suggest that the pattern of the [Ca2+](PM) rise directly determines the types of fusing granules.
机译:我们通过双色全内反射荧光显微镜分析了大鼠颗粒细胞中胰岛素颗粒融合与绿色荧光蛋白融合的胰岛素以及大鼠β细胞中亚细胞膜Ca2 +浓度([Ca2 +](PM))与Ca2 +指示剂Fura Red的关系。我们发现,在高KCl诱发的释放和高葡萄糖诱发的第一阶段释放期间,[Ca2 +](PM)的快速显着升高导致胰岛素颗粒的融合主要来自先前停靠的颗粒。相反,在低KCl诱发的释放和葡萄糖诱发的第二相释放期间,[Ca2 +](PM)缓慢而持续的升高诱导了来自内部池转移的新来者的融合。这些数据表明[Ca2 +](PM)上升的模式直接决定了熔融颗粒的类型。

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