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钠钾ATP酶与肾小管钠钾转运急性变化的关系。

Relation of Na-K-ATPase to acute changes in renal tubular sodium and potassium transport.

作者信息

Katz A I, Lindheimer M D

出版信息

J Gen Physiol. 1975 Aug;66(2):209-22. doi: 10.1085/jgp.66.2.209.

Abstract

Renal Na-K-ATPase activity changes adaptively in response to chronic alterations in sodium reabsorption or potassium secretion, but the role of this enzyme in rapid adjustments of renal tubular Na and K transport is not known. To evaluate this question, microsomal Na-K-ATPase specific activity and kinetics were determined in the rat and guinea pig kidney after massive but short-term (3 h) sodium or potassium loading. In other experiments renal sodium handling was evaluated in hydropenic and saline-loaded rats in which enzyme synthesis was prevented by the concurrent administration of actinomycin D or cycloheximide. Saline loading increased net sodium reabsorption in both rats and guinea pigs, but microsomal Na-K-ATPase from the outer medulla (where the reabsorptive increment is greatest) did not change significantly in either species. In vitro [3H]ouabain bidint to guinea pig microsomes and apparent Km for sodium of rat microsomal Na-K-ATPase, both from outer medulla, were also unaltered. Actinomycin D and cycloheximide failed to increase sodium excretion and microsomal Na-K-ATPase remained unchanged. KCL loading resulted in a 10-fold increase in K excretion but again Na-K-ATPase specific activity (in cortex, outer medulla, and papilla), and its apparent Km for potassium were not affected. Taken together these results suggest that rapid adjustments in remal tubular Na or K transport are mediated by mechanisms that do not involve the Na-K-ATPase enzyme system.

摘要

肾钠钾ATP酶活性会根据钠重吸收或钾分泌的慢性改变而适应性变化,但该酶在肾小管钠和钾转运快速调节中的作用尚不清楚。为评估此问题,在大鼠和豚鼠肾脏大量但短期(3小时)钠或钾负荷后,测定微粒体钠钾ATP酶比活性和动力学。在其他实验中,在禁水和盐水负荷的大鼠中评估肾钠处理情况,这些大鼠同时给予放线菌素D或环己酰亚胺以阻止酶合成。盐水负荷增加了大鼠和豚鼠的净钠重吸收,但两种动物外髓质(重吸收增加最大的部位)的微粒体钠钾ATP酶均无显著变化。来自外髓质的豚鼠微粒体的体外[3H]哇巴因结合以及大鼠微粒体钠钾ATP酶对钠的表观Km也未改变。放线菌素D和环己酰亚胺未能增加钠排泄,微粒体钠钾ATP酶保持不变。氯化钾负荷导致钾排泄增加10倍,但钠钾ATP酶比活性(在皮质、外髓质和乳头)及其对钾的表观Km均未受影响。综合这些结果表明,肾小管钠或钾转运的快速调节是由不涉及钠钾ATP酶系统的机制介导的。

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