Iezzi Mariella, Kouri Georgia, Fukuda Mitsunori, Wollheim Claes B
Division of Clinical Biochemistry, Department of Internal Medicine, University Medical Center, 1211 Geneva 4, Switzerland.
J Cell Sci. 2004 Jul 1;117(Pt 15):3119-27. doi: 10.1242/jcs.01179. Epub 2004 Jun 9.
Synaptotagmin (Syt) is involved in Ca2+ -regulated secretion and has been suggested to serve as a general Ca2+ sensor on the membrane of secretory vesicles in neuronal cells. Insulin exocytosis from the pancreatic beta-cell is an example of a Ca2+ -dependent secretory process. Previous studies have yielded conflicting results as to which Syt isoform is present on the secretory granules in the native beta-cell. Here we show by western blotting and RT-PCR analysis, the presence of both Syt V and Syt IX in rat pancreatic islets and in the clonal beta-cell line INS-1E. The subcellular distribution of the two Syt isoforms was assessed by confocal microscopy and by sedimentation in a continuous sucrose density gradient in INS-1E cells. These experiments show that both proteins colocalize with insulin-containing secretory granules but are absent from synaptic-like microvesicles. Further immunofluorescence studies performed in primary pancreatic endocrine cells revealed that Syt V is present in glucagon-secreting alpha-cells, whereas Syt IX is associated with insulin granules in beta-cells. Transient overexpression of Syt V and Syt IX did not alter exocytosis in INS-1E cells. Finally, reduction of the expression of both Syt isoforms by RNA interference did not change basal secretion. Remarkably, hormone release in response to glucose was selectively and strongly reduced, indicating that Syt V and Syt IX are directly involved in the Ca2+ -dependent stimulation of exocytosis.
突触结合蛋白(Syt)参与Ca2+调节的分泌过程,有人认为它是神经元细胞中分泌囊泡膜上的一种通用Ca2+传感器。胰腺β细胞的胰岛素胞吐作用是Ca2+依赖性分泌过程的一个例子。以往的研究对于天然β细胞分泌颗粒上存在哪种Syt亚型产生了相互矛盾的结果。在这里,我们通过蛋白质印迹和RT-PCR分析表明,大鼠胰岛和克隆β细胞系INS-1E中同时存在Syt V和Syt IX。通过共聚焦显微镜和在INS-1E细胞中进行连续蔗糖密度梯度沉降来评估这两种Syt亚型的亚细胞分布。这些实验表明,这两种蛋白质都与含胰岛素的分泌颗粒共定位,但在突触样微泡中不存在。在原代胰腺内分泌细胞中进行的进一步免疫荧光研究表明,Syt V存在于分泌胰高血糖素的α细胞中,而Syt IX与β细胞中的胰岛素颗粒相关。Syt V和Syt IX的瞬时过表达并未改变INS-1E细胞中的胞吐作用。最后,通过RNA干扰降低这两种Syt亚型的表达并没有改变基础分泌。值得注意的是,对葡萄糖的激素释放被选择性地强烈降低,表明Syt V和Syt IX直接参与Ca2+依赖性的胞吐刺激。