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胰腺β细胞中的多种胞吐途径。

Multiple exocytotic pathways in pancreatic beta cells.

作者信息

Takahashi N, Kadowaki T, Yazaki Y, Miyashita Y, Kasai H

机构信息

Third Department of Internal Medicine, Faculty of Medicine, University of Tokyo, Bunkyo-ku, Tokyo 113, Japan.

出版信息

J Cell Biol. 1997 Jul 14;138(1):55-64. doi: 10.1083/jcb.138.1.55.

Abstract

Ca2+-dependent exocytotic pathways in mouse pancreatic beta cells were investigated using both capacitance measurement and amperometric detection of vesicular contents. Serotonin was preloaded into large dense-core vesicles for the amperometry. Exocytosis was induced by rapid elevation of cytosolic Ca2+ concentrations using caged-Ca2+ compounds. Capacitance measurement revealed two major components of exocytosis, and only the slow component was accompanied by amperometric events reflecting quantal serotonin secretion. Moreover, the fast and slow exocytoses induced the two forms of endocytosis that were reported to follow the exocytoses of small-clear and large dense-core vesicles, respectively. Interestingly, we recorded two types of responses of quantal events: in the type-1 response, most quantal events occurred with a delay of 0.2 s and were rapidly exhausted with a time constant of 1.7 s, while, in the type-2 response, quantal events occurred with a delay of 2.5 s and were sustained. This suggests the existence of two pathways or modes of the exocytosis involving large dense-core vesicles. Thus, we have revealed three exocytotic pathways with divergent fusion kinetics in beta cells, which provide a new basis for the understanding of the physiology and pathology of beta cells.

摘要

利用电容测量和囊泡内容物的安培检测法,对小鼠胰腺β细胞中依赖Ca2+的胞吐途径进行了研究。将5-羟色胺预加载到大型致密核心囊泡中用于安培测量。使用笼形Ca2+化合物快速提高胞质Ca2+浓度来诱导胞吐作用。电容测量揭示了胞吐作用的两个主要成分,并且只有慢成分伴随着反映5-羟色胺量子分泌的安培事件。此外,快速和慢速胞吐作用分别诱导了两种形式的内吞作用,据报道这两种内吞作用分别跟随小清亮囊泡和大型致密核心囊泡的胞吐作用。有趣的是,我们记录了量子事件的两种类型的反应:在1型反应中,大多数量子事件延迟0.2秒发生,并以1.7秒的时间常数迅速耗尽,而在2型反应中,量子事件延迟2.5秒发生并持续。这表明存在涉及大型致密核心囊泡的两种胞吐途径或模式。因此,我们揭示了β细胞中具有不同融合动力学的三种胞吐途径,这为理解β细胞的生理学和病理学提供了新的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0769/2139953/0dd833931e60/JCB.29071f1.jpg

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