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大鼠腮腺分泌颗粒中质膜诱导淀粉酶释放的特性:Ca2+和Mg-ATP的作用

Properties of plasma membrane-induced amylase release from rat parotid secretory granules: effects of Ca2+ and Mg-ATP.

作者信息

Mizuno M, Kameyama Y, Yashiro K, Shin S O, Yokota Y

机构信息

Department of Oral Biochemistry, Asahi University School of Dentistry, Gifu, Japan.

出版信息

Biochim Biophys Acta. 1992 Apr 22;1116(2):104-11. doi: 10.1016/0304-4165(92)90106-5.

Abstract

A secretory granular fraction (SG) and a plasma membrane rich fraction (PM) have been isolated from rat parotid gland by differential and Percoll gradient centrifugation. With these two fractions, a cell-free interaction system has been reconstituted to clarify the exocytotic interaction between the secretory granules and plasma membranes, and the conditions of amylase release from SG have been characterized in vitro. The addition of PM into this assay system induced a rapid and transient release of amylase from SG. Some other membranes such as erythrocyte ghosts also mimicked the effect of PM. This release was increased by Ca2+, but was not completely blocked by EGTA. Simultaneous addition of 1 mM ATP with 1 mM MgCl2 (Mg-ATP) in the presence of Ca2+ reduced this release. However, in spite of the existence of Mg-ATP, the stimulation of PM-induced amylase release was caused by Ca2+ in a concentration-dependent manner (10(-7)-10(-3) M). These results suggest that Ca2+ and Mg-ATP should participate as important regulators in the exocytotic interaction between secretory granules and plasma membranes in this system. Furthermore, the differences between our system and intact cells are also discussed.

摘要

通过差速离心和Percoll梯度离心从大鼠腮腺中分离出分泌颗粒组分(SG)和富含质膜的组分(PM)。利用这两个组分,重建了一个无细胞相互作用系统,以阐明分泌颗粒与质膜之间的胞吐相互作用,并在体外对淀粉酶从SG释放的条件进行了表征。向该测定系统中加入PM会诱导淀粉酶从SG快速短暂释放。一些其他膜,如红细胞血影,也模拟了PM的作用。这种释放被Ca2+增强,但未被EGTA完全阻断。在Ca2+存在的情况下,同时加入1 mM ATP和1 mM MgCl2(Mg-ATP)会减少这种释放。然而,尽管存在Mg-ATP,PM诱导的淀粉酶释放的刺激仍由Ca2+以浓度依赖的方式(10(-7)-10(-3) M)引起。这些结果表明,Ca2+和Mg-ATP应作为该系统中分泌颗粒与质膜之间胞吐相互作用的重要调节因子参与其中。此外,还讨论了我们的系统与完整细胞之间的差异。

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