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肾钠钾ATP酶:其在肾小管钠钾转运中的作用

Renal Na-K-ATPase: its role in tubular sodium and potassium transport.

作者信息

Katz A I

出版信息

Am J Physiol. 1982 Mar;242(3):F207-19. doi: 10.1152/ajprenal.1982.242.3.F207.

Abstract

Na-K-ATPase, the enzymatic equivalent of the sodium:potassium pump, is found in large amounts in the kidney, and this organ has figured prominently both as a source for the purification of the enzyme and as a target for the study of its properties. Located on the basolateral aspect of tubule cells, renal Na-K-ATPase plays a key role in the active translocation of Na and K across this membrane as well as in the "secondary active" transport of a number of other solutes. The activity of renal Na-K-ATPase varies in parallel with sustained changes in Na or K transport, indicating the participation of this enzyme in the chronic adaptation of the kidney to altered Na reabsorption or K secretory load. Because of its slow turnover, however, the role of Na-K-ATPase in the modulation of acute changes in cation transport is unclear. Several hormones and vanadate influence renal Na-K-ATPase activity, and their importance as potential physiologic regulators of this enzyme is examined. Most of the information on the renal enzyme has been obtained from studies using homogenates or subcellular fractions thereof, but more recently the development of tubule microdissection and microanalytic methods has made possible the study of Na-K-ATPase in single nephron segments. This approach has opened new possibilities for evaluating the role of this enzyme in kidney function by facilitating correlation of enzyme activity with transport events in the same structure and by enabling us to focus the study of Na-K-ATPase on discrete anatomic subdivisions of the functionally heterogeneous nephron.

摘要

钠钾ATP酶,即钠钾泵的酶学等效物,在肾脏中大量存在,该器官在酶的纯化来源以及其性质研究的靶点方面都具有重要地位。肾钠钾ATP酶位于肾小管细胞的基底外侧,在钠和钾跨此膜的主动转运以及多种其他溶质的“继发性主动”转运中起关键作用。肾钠钾ATP酶的活性与钠或钾转运的持续变化平行,表明该酶参与了肾脏对钠重吸收或钾分泌负荷改变的慢性适应过程。然而,由于其周转缓慢,钠钾ATP酶在阳离子转运急性变化调节中的作用尚不清楚。几种激素和钒酸盐会影响肾钠钾ATP酶的活性,本文将探讨它们作为该酶潜在生理调节因子的重要性。关于肾酶的大部分信息来自使用匀浆或其亚细胞组分的研究,但最近肾小管显微切割和微量分析方法的发展使得在单个肾单位节段中研究钠钾ATP酶成为可能。这种方法通过促进酶活性与同一结构中转运事件的相关性,并使我们能够将钠钾ATP酶的研究聚焦于功能异质性肾单位的离散解剖亚区,为评估该酶在肾功能中的作用开辟了新的可能性。

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