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低渗诱导抗利尿激素对肾上皮A6细胞中氨氯地平敏感的短路电流作用增强。

Hyposmolality-induced enhancement of ADH action on amiloride-sensitive Isc in renal epithelial A6 cells.

作者信息

Niisato N, Marunaka Y

机构信息

Laboratory for Cellular and Molecular Physiology, Hospital for Sick Children Research Institute, University of Toronto, Ontario, Canada.

出版信息

Jpn J Physiol. 1997 Feb;47(1):131-7. doi: 10.2170/jjphysiol.47.131.

Abstract

To assess the action of antidiuretic hormone (ADH) and the osmolality of bathing solution on amiloride-sensitive Na+ transport, we measured the amiloride-sensitive short-circuit current (Isc) and single-channel currents in renal epithelial A6 cells. The A6 cells were cultured on permeable supports for 9-13 d without aldosterone treatment. The basal amiloride-sensitive Isc and the density of the amiloride-sensitive Na+ channel at the apical membrane increased as the osmolality of the bathing solution decreased. ADH stimulated the amiloride-sensitive Isc. The stimulatory action of ADH was enhanced by low osmolality. The stimulatory action of hyposmolality on the amiloride-sensitive Isc was significantly diminished by pretreatment with brefeldin A (BFA, a blocker of protein translocation), while BFA had no significant effect on the ratio of ADH-stimulated amiloride-sensitive Isc to basal amiloride-sensitive Isc. These results suggest that hyposmolality stimulates the translocation of amiloride-sensitive Na+ channels to the apical membrane from the cytosolic store sites of the channel, and that ADH may activate amiloride-sensitive Na+ channels pre-existing in the apical membrane or translocate the channel via BFA-insensitive pathways in a manner dependent on the osmolality of the bathing solution in aldosterone-untreated A6 cells, differently from aldosterone-treated A6 cells in which ADH stimulates the translocation of amiloride-sensitive Na+ channels via BFA-sensitive pathways.

摘要

为了评估抗利尿激素(ADH)的作用以及浴液渗透压对氨氯吡咪敏感的Na⁺转运的影响,我们测量了肾上皮A6细胞中氨氯吡咪敏感的短路电流(Isc)和单通道电流。将A6细胞在可渗透支持物上培养9 - 13天,不进行醛固酮处理。随着浴液渗透压降低,基础氨氯吡咪敏感的Isc以及顶端膜上氨氯吡咪敏感的Na⁺通道密度增加。ADH刺激氨氯吡咪敏感的Isc。低渗透压增强了ADH的刺激作用。用布雷菲德菌素A(BFA,一种蛋白质转运阻滞剂)预处理后,低渗对氨氯吡咪敏感的Isc的刺激作用显著减弱,而BFA对ADH刺激的氨氯吡咪敏感的Isc与基础氨氯吡咪敏感的Isc的比值无显著影响。这些结果表明,低渗刺激氨氯吡咪敏感的Na⁺通道从通道的胞质储存位点转运至顶端膜,并且在未用醛固酮处理的A6细胞中,ADH可能通过依赖于浴液渗透压的方式激活顶端膜中预先存在的氨氯吡咪敏感的Na⁺通道或通过BFA不敏感的途径转运该通道,这与用醛固酮处理的A6细胞不同,在后者中ADH通过BFA敏感的途径刺激氨氯吡咪敏感的Na⁺通道的转运。

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