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Rab3D的过表达增强了转基因小鼠胰腺腺泡中淀粉酶的调节性分泌。

Overexpression of Rab3D enhances regulated amylase secretion from pancreatic acini of transgenic mice.

作者信息

Ohnishi H, Samuelson L C, Yule D I, Ernst S A, Williams J A

机构信息

Department of Physiology, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.

出版信息

J Clin Invest. 1997 Dec 15;100(12):3044-52. doi: 10.1172/JCI119859.

Abstract

Rab3D, a member of the ras-related GTP-binding protein Rab family, is localized to secretory granules of various exocrine tissues such as acinar cells of the pancreas, chief cells of the stomach, and parotid and lacrimal secretory cells. To elucidate the function of Rab3D in exocytosis, we have generated transgenic mice that over-express Rab3D specifically in pancreatic acinar cells. Hemagglutinin-tagged Rab3D was localized to zymogen granules by immunohistochemistry, and was shown to be present on zymogen granule membranes by Western blotting; both results are similar to previous studies of endogenous Rab3D. Secretion measurements in isolated acinar preparations showed that overexpression of Rab3D enhanced amylase release. Amylase secretion from intact acini of transgenic mice 5 min after 10 pM cholecystokinin octapeptide (CCK) stimulation was enhanced by 160% of control. In streptolysin-O-permeabilized acini of transgenic mice, amylase secretion induced by 100 microM GTP-gamma-S was enhanced by 150%, and 10 microM Ca2+-stimulated amylase secretion was augmented by 206% of that of the control. To further elucidate Rab3D involvement in stimulus-secretion coupling, we examined the effect of CCK on the rate of GTP binding to Rab3D. Stimulation of permeabilized acini with 10 pM CCK increased the incorporation of radiolabeled GTP into HA-tagged Rab3D. These results indicate that overexpression of Rab3D enhances secretagogue-stimulated amylase secretion through both calcium and GTP pathways. We conclude that Rab3D protein on zymogen granules plays a stimulatory role in regulated amylase secretion from pancreatic acini.

摘要

Rab3D是Ras相关GTP结合蛋白Rab家族的成员之一,定位于各种外分泌组织的分泌颗粒,如胰腺的腺泡细胞、胃的主细胞以及腮腺和泪腺分泌细胞。为了阐明Rab3D在胞吐作用中的功能,我们构建了在胰腺腺泡细胞中特异性过表达Rab3D的转基因小鼠。通过免疫组织化学方法,血凝素标记的Rab3D定位于酶原颗粒,蛋白质印迹法显示其存在于酶原颗粒膜上;这两个结果与之前对内源性Rab3D的研究相似。在分离的腺泡制剂中进行的分泌测量表明,Rab3D的过表达增强了淀粉酶的释放。在10 pM八肽胆囊收缩素(CCK)刺激5分钟后,转基因小鼠完整腺泡的淀粉酶分泌比对照增强了160%。在转基因小鼠经链球菌溶血素-O通透处理的腺泡中,100 microM GTP-γ-S诱导的淀粉酶分泌增强了150%,10 microM Ca2+刺激的淀粉酶分泌比对照增加了206%。为了进一步阐明Rab3D在刺激-分泌偶联中的作用,我们检测了CCK对Rab3D结合GTP速率的影响。用10 pM CCK刺激通透处理的腺泡,增加了放射性标记的GTP掺入HA标记的Rab3D。这些结果表明,Rab3D的过表达通过钙和GTP途径增强了促分泌剂刺激的淀粉酶分泌。我们得出结论,酶原颗粒上的Rab3D蛋白在胰腺腺泡调节淀粉酶分泌中起刺激作用。

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