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食用蛙副旁上皮细胞中Ca++-ATP酶活性的超细胞化学定位

Ultracytochemical localization of Ca++-ATPase activity in the paraphyseal epithelial cells of the frog, Rana esculenta.

作者信息

Ueno S, Umar H, Bambauer H J, Ueck M

出版信息

Cell Tissue Res. 1984;235(1):3-11. doi: 10.1007/BF00213716.

Abstract

Ca++-ATPase activity was studied ultracytochemically (cf. Ando et al. 1981) in the paraphysis cerebri of the frog. An intense reaction was demonstrated on the plasmalemma of the microvilli at the apical pole of paraphyseal cells; in contrast, the basolateral plasmalemma showed only a slight staining. In addition, mitochondria, gap junctions, cilia, and cytoplasmic elements (e.g., microfilaments) displayed Ca++-ATPase activity. Variation of the Ca++-concentration in the incubation medium from 0.1 mM to 100 mM altered the Ca++-ATPase activity of the cell organelles. The substitution of Ca- by Mg-ions resulted in a conspicuous decrease in the enzyme activity, especially on the apical plasmalemma. Ca++-ATPase activity is claimed to be involved in a number of extra- and intracellular functions. In comparison to the epithelium of the adjacent choroid plexus the paraphyseal epithelial cell is thought to be a principal Ca-ion regulator of the cerebrospinal fluid in frogs.

摘要

采用超微细胞化学方法(参见安藤等人,1981年)研究了青蛙脑旁体中的钙离子 - ATP酶活性。在脑旁体细胞顶端微绒毛的质膜上呈现出强烈反应;相比之下,基底外侧质膜仅显示出轻微染色。此外,线粒体、缝隙连接、纤毛和细胞质成分(如微丝)均表现出钙离子 - ATP酶活性。孵育培养基中钙离子浓度从0.1 mM变化至100 mM会改变细胞器的钙离子 - ATP酶活性。用镁离子替代钙离子会导致酶活性显著降低,尤其是在顶端质膜上。钙离子 - ATP酶活性被认为参与了许多细胞外和细胞内功能。与相邻脉络丛上皮相比,脑旁体上皮细胞被认为是青蛙脑脊液中主要的钙离子调节者。

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