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醛固酮对大鼠皮质集合管钠钾泵的早期影响。

Early effects of aldosterone on Na-K pump in rat cortical collecting tubules.

作者信息

Fujii Y, Takemoto F, Katz A I

机构信息

Department of Medicine, University of Chicago Pritzker School of Medicine, Illinois 60637.

出版信息

Am J Physiol. 1990 Jul;259(1 Pt 2):F40-5. doi: 10.1152/ajprenal.1990.259.1.F40.

Abstract

Sustained exposure to aldosterone (Aldo) increases the abundance and activity of the Na-K pump in cortical collecting tubules (CCT). However, the onset and mechanism of the early interaction of Aldo with the CCT pump, especially in adrenal-intact animals, are unclear. We evaluated the short-term effects of the hormone on Na-K-adenosinetriphosphatase (ATPase) activity and on ouabain-sensitive 86Rb uptake, a measure of the transporting rate of the pump, in microdissected CCT from adrenal-intact rats. Incubation with Aldo (10(-8) M, 2 h) had no effect on Na-K-ATPase activity (Vmax), whereas it produced at least a twofold increase in 86Rb uptake. This effect was generated by physiological concentrations of the hormone (threshold 10(-10) M; apparent K1/2 approximately 10(-9) M), after a short lag of less than or equal to 30 min. Incubation with Aldo in the presence of amiloride or nystatin or in a Na-free medium (choline chloride) did not prevent the enhanced 86Rb uptake seen after Aldo alone; possible interpretations of these observations are discussed. We conclude that Aldo produces a rapid stimulation of pump function in CCT that precedes its induction of new pump synthesis; the physiological significance of this effect is suggested by its occurrence in tubules from adrenal-intact animals within the time frame and concentration range of the hormone's effects on electrolyte transport.

摘要

持续暴露于醛固酮(Aldo)会增加皮质集合管(CCT)中钠钾泵的丰度和活性。然而,Aldo与CCT泵早期相互作用的起始及机制尚不清楚,尤其是在肾上腺功能正常的动物中。我们评估了该激素对肾上腺功能正常大鼠经显微解剖获得的CCT中钠钾 - 三磷酸腺苷酶(ATPase)活性以及哇巴因敏感的86Rb摄取(一种衡量泵转运速率的指标)的短期影响。用Aldo(10⁻⁸ M,2小时)孵育对钠钾 - ATPase活性(Vmax)没有影响,而它使86Rb摄取至少增加了两倍。这种效应由该激素的生理浓度(阈值10⁻¹⁰ M;表观K1/2约为10⁻⁹ M)产生,经过小于或等于30分钟的短暂延迟。在存在氨氯吡脒或制霉菌素的情况下或在无钠培养基(氯化胆碱)中用Aldo孵育,并未阻止单独使用Aldo后观察到的86Rb摄取增加;讨论了这些观察结果的可能解释。我们得出结论,Aldo在诱导新泵合成之前能快速刺激CCT中的泵功能;这种效应的生理意义体现在其在肾上腺功能正常动物的肾小管中,在该激素影响电解质转运的时间框架和浓度范围内发生。

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