Silver R B, Soleimani M
Department of Physiology and Biophysics, Cornell University Medical College, New York, New York 10021, USA.
Am J Physiol. 1999 Jun;276(6):F799-811. doi: 10.1152/ajprenal.1999.276.6.F799.
Molecular cloning experiments have identified the existence of two H+-K+-ATPases (HKAs), colonic and gastric. Recent functional and molecular studies indicate the presence of both transporters in the kidney, which are presumed to mediate the exchange of intracellular H+ for extracellular K+. On the basis of these studies, a picture is evolving that indicates differential regulation of HKAs at the molecular level in acid-base and electrolyte disorders. Of the two transporters, gastric HKA is expressed constitutively along the length of the collecting duct and is responsible for H+ secretion and K+ reabsorption under normal conditions and may be stimulated with acid-base perturbations and/or K+ depletion. This regulation may be species specific. To date there are no data to indicate that the colonic HKA (HKAc) plays a role in H+ secretion or K+ reabsorption under normal conditions. However, HKAc shows adaptive regulation in pathophysiological conditions such as K+ depletion, NaCl deficiency, and proximal renal tubular acidosis, suggesting an important role for this exchanger in potassium, HCO-3, and sodium (or chloride) reabsorption in disease states. The purpose of this review is to summarize recent functional and molecular studies on the regulation of HKAs in physiological and pathophysiological states. Possible signals responsible for regulation of HKAs in these conditions will be discussed. Furthermore, the role of these transporters in acid-base and electrolyte homeostasis will be evaluated in the context of genetically altered animals deficient in HKAc.
分子克隆实验已证实存在两种H⁺-K⁺-ATP酶(HKAs),即结肠型和胃型。最近的功能和分子研究表明,这两种转运体在肾脏中均有存在,推测它们介导细胞内H⁺与细胞外K⁺的交换。基于这些研究,一种观点逐渐形成,即HKAs在酸碱和电解质紊乱时在分子水平上存在差异调节。在这两种转运体中,胃型HKA在集合管全长中持续表达,在正常情况下负责H⁺分泌和K⁺重吸收,并且可能在酸碱失衡和/或K⁺缺乏时受到刺激。这种调节可能具有物种特异性。迄今为止,尚无数据表明结肠型HKA(HKAc)在正常情况下参与H⁺分泌或K⁺重吸收。然而,HKAc在病理生理状态如K⁺缺乏、NaCl缺乏和近端肾小管酸中毒时表现出适应性调节,提示该交换体在疾病状态下对钾、HCO₃⁻和钠(或氯)重吸收具有重要作用。本综述的目的是总结近期关于HKAs在生理和病理生理状态下调节的功能和分子研究。将讨论在这些情况下负责调节HKAs的可能信号。此外,将在HKAc基因敲除的基因改变动物背景下评估这些转运体在酸碱和电解质稳态中的作用。