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血管紧张素II对兔肾皮质基底外侧Na(+)-HCO3-协同转运体的刺激作用。

Stimulation of basolateral Na(+)-HCO3- cotransporter by angiotensin II in rabbit renal cortex.

作者信息

Eiam-Ong S, Hilden S A, Johns C A, Madias N E

机构信息

Department of Medicine, Tufts University School of Medicine, Boston, Massachusetts.

出版信息

Am J Physiol. 1993 Aug;265(2 Pt 2):F195-203. doi: 10.1152/ajprenal.1993.265.2.F195.

Abstract

Angiotensin (ANG) II is now recognized as a powerful direct controller of Na+ reabsorption in the proximal convoluted tubule, a property that predominantly reflects stimulation of the transepithelial NaHCO3 flux. Numerous studies have established that this effect of ANG II represents stimulation of the apical Na+/H+ exchanger, but a single microperfusion study has also suggested direct stimulation of the basolateral Na(+)-HCO3- cotransporter. We have carried out studies in basolateral membrane vesicles from rabbit renal cortex to examine directly whether ANG II exerts an independent effect on the Na(+)-HCO3- cotransporter. Preincubation of vesicles with ANG II (10(-11) to 10(-9) M) for 15 min enhanced the activity of the cotransporter, the greatest effect occurring at 10(-11) M (41 +/- 1.1%, P < 0.005). This stimulation reflected an increase in the maximal enzyme reaction velocity of the cotransporter but no change in the Michaelis constant for Na+. ANG II had no effect on Na(+)-dependent succinate transport. ANG I (10(-9) M) and ANG III (10(-10) M) also stimulated the Na(+)-HCO3- cotransporter, and captopril (10(-4) M) attenuated the ANG I stimulation by 68 +/- 3.5% (P < 0.01) but not that of ANG II and III. Saralasin (10(-11) to 10(-8) M) by itself behaved as an agonist, and its stimulation was additive to that by ANG II. The nonpeptide ANG II receptor antagonist, losartan potassium (10(-6) M), and the disulfide-reducing agent, dithiothreitol (10 mM), each by itself had no effect on the cotransporter but each markedly attenuated the ANG II effect (by 77 +/- 1.4%, P < 0.01 and 74 +/- 1.6%, P < 0.005, respectively) in accord with the view that the basolateral receptor belongs to subtype 1. These results identify physiological concentrations of ANG II as a potent, direct, and specific stimulator of the basolateral Na(+)-HCO3- cotransporter.

摘要

血管紧张素(ANG)II现在被认为是近端曲管中Na+重吸收的强大直接调控因子,这一特性主要反映了对跨上皮NaHCO3通量的刺激。大量研究表明,ANG II的这种作用代表了对顶端Na+/H+交换体的刺激,但一项微灌注研究也表明它对基底外侧Na(+)-HCO3-协同转运体有直接刺激作用。我们对兔肾皮质基底外侧膜囊泡进行了研究,以直接检验ANG II是否对Na(+)-HCO3-协同转运体产生独立作用。用ANG II(10(-11)至10(-9) M)预孵育囊泡15分钟可增强协同转运体的活性,最大效应出现在10(-11) M(41 +/- 1.1%,P < 0.005)。这种刺激反映了协同转运体最大酶反应速度的增加,但Na+的米氏常数没有变化。ANG II对Na+依赖性琥珀酸转运没有影响。ANG I(10(-9) M)和ANG III(10(-10) M)也刺激了Na(+)-HCO3-协同转运体,卡托普利(10(-4) M)使ANG I的刺激作用减弱了68 +/- 3.5%(P < 0.01),但对ANG II和ANG III的刺激作用没有影响。沙拉新(10(-11)至10(-8) M)本身表现为激动剂,其刺激作用与ANG II的刺激作用相加。非肽类ANG II受体拮抗剂氯沙坦钾(10(-6) M)和二硫键还原剂二硫苏糖醇(10 mM)本身对协同转运体均无影响,但各自均显著减弱了ANG II的作用(分别为77 +/- 1.4%,P < 0.01和74 +/- 1.6%,P < 0.005),这与基底外侧受体属于1型亚型的观点一致。这些结果表明,生理浓度的ANG II是基底外侧Na(+)-HCO3-协同转运体的有效、直接和特异性刺激剂。

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