首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Direct imaging shows that insulin granule exocytosis occurs by complete vesicle fusion.
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Direct imaging shows that insulin granule exocytosis occurs by complete vesicle fusion.

机译:直接成像显示胰岛素颗粒通过完全的囊泡融合发生胞吐作用。

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Confocal imaging of GFP-tagged secretory granules combined with the use of impermeant extracellular dyes permits direct observation of insulin packaged in secretory granules, trafficking of these granules to the plasma membrane, exocytotic fusion of granules with the plasma membrane, and eventually the retrieval of membranes by endocytosis. Most such studies have been done in tumor cell lines, using either confocal methods or total internal reflectance microscopy. Here we compared these methods by using GFP-syncollin or PC3-GFP plus rhodamine dextrans to study insulin granule dynamics in insulinoma cells, normal mouse islets, and primary pancreatic beta cells. We found that most apparently docked granules did not fuse with the plasma membrane after stimulation. Granules that did fuse typically fused completely, but a few dextran-filled granules lingered at the membrane. Direct recycling of granules occurred only rarely. Similar results were obtained with both confocal and total internal reflection microscopy, although each technique had advantages for particular aspects of the granule life cycle. We conclude that insulin exocytosis involves a prolonged interaction of secretory granules with the plasma membrane, and that the majority of exocytotic events occur by full, not partial, fusion.
机译:GFP标记的分泌颗粒的共聚焦成像与不渗透的细胞外染料的结合使用,可以直接观察包装在分泌颗粒中的胰岛素,将这些颗粒运输到质膜,颗粒与质膜的胞外融合以及最终回收膜通过内吞作用。大多数此类研究已使用共聚焦方法或全内反射显微镜在肿瘤细胞系中进行。在这里,我们通过使用GFP-晕厥蛋白或PC3-GFP加上罗丹明葡聚糖比较了这些方法,以研究胰岛素瘤细胞,正常小鼠胰岛和原发性胰岛β细胞中的胰岛素颗粒动力学。我们发现刺激后最明显的对接颗粒不会与质膜融合。确实融合了的颗粒通常会完全融合,但一些右旋糖酐填充的颗粒会滞留在膜上。直接回收颗粒很少。共焦和全内反射显微镜均获得了相似的结果,尽管每种技术在颗粒生命周期的特定方面均具有优势。我们得出结论,胰岛素胞吐作用涉及分泌颗粒与质膜的延长相互作用,并且大多数胞吐事件通过完全而非部分融合发生。

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