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钙离子跨从大鼠肾皮质分离出的质膜的转运。

Calcium ion transport across plasma membranes isolated from rat kidney cortex.

作者信息

Gmaj P, Murer H, Kinne R

出版信息

Biochem J. 1979 Mar 15;178(3):549-57. doi: 10.1042/bj1780549.

Abstract

Basal-lateral-plasma-membrane vesicles and brush-border-membrane vesicles were isolated from rat kidney cortex by differential centrifugation followed by free-flow-electrophoresis. Ca2+ uptake into these vesicles was investigated by a rapid filtration method. Both membranes show a considerable binding of Ca2+ to the vesicle interior, making the analysis of passive fluxes in uptake experiments difficult. Only the basal-lateral-plasma-membrane vesicles exhibit an ATP-dependent pump activity which can be distinguished from the activity in mitochondrial and endoplasmic reticulum by virtue of the different distribution during free-flow electrophoresis and its lack of sensitivity to oligomycin. The basal-lateral plasma membranes contain in addition a Na+/Ca2+-exchange system which mediates a probably rheogenic counter-transport of Ca2+ and Na+ across the basal cell border. The latter system is probably involved in the secondary active Na+-dependent and ouabain-inhibitable Ca2+ reabsorption in the proximal tubule, the ATP-driven system is probably more important for the maintenance of a low concentration of intracellular Ca2+.

摘要

通过差速离心继以自由流动电泳从大鼠肾皮质分离出基底外侧质膜囊泡和刷状缘膜囊泡。采用快速过滤法研究这些囊泡对钙离子的摄取。两种膜均显示钙离子与囊泡内部有相当程度的结合,这使得在摄取实验中对被动通量的分析变得困难。只有基底外侧质膜囊泡表现出依赖ATP的泵活性,通过自由流动电泳期间的不同分布及其对寡霉素缺乏敏感性,可将其与线粒体和内质网中的活性区分开来。此外,基底外侧质膜含有一个钠/钙交换系统,该系统介导钙离子和钠离子可能通过细胞基底边界的生电逆向转运。后一系统可能参与近端小管中依赖钠离子和哇巴因抑制的继发性主动钙离子重吸收,而ATP驱动的系统可能对维持细胞内低钙离子浓度更为重要。

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