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哇巴因通过抑制大鼠内髓集合管钠钾ATP酶对铵离子的摄取来减少净酸分泌并提高细胞内pH值。

Ouabain reduces net acid secretion and increases pHi by inhibiting NH4+ uptake on rat tIMCD Na(+)-K(+)-ATPase.

作者信息

Wall S M

机构信息

Division of Renal Diseases and Hypertension, University of Texas Medical School at Houston 77030, USA.

出版信息

Am J Physiol. 1997 Dec;273(6):F857-68. doi: 10.1152/ajprenal.1997.273.6.F857.

Abstract

In the rat terminal inner medullary collecting duct (tIMCD), Na+ pump inhibition reduces transepithelial net acid secretion (JtAMM) [JH = total CO2 absorption (JtCO2)+ total ammonia secretion] and increases resting intracellular pH (pHi). The increase in pHi and reduction in JH that follow ouabain addition do not occur in the absence of NH4+ nor when NH4+ is substituted with another weak base. The purpose of this study was to explore the mechanism of the NH4(+)-dependent reduction in JtCO2 and increase in pHi that follow ouabain addition. We hypothesized that NH4+ enters the tIMCD cell through the Na(+)-K(+)-ATPase with proton release in the cytosol. To test this hypothesis, tIMCDs were dissected from deoxycorticosterone-treated rats and perfused in vitro with symmetrical physiological saline solutions containing 6 mM NH4Cl. Since K+ and NH4+ compete for a common binding site on the Na+ pump, increasing extracellular K+ should limit NH4+ (and hence net H+) uptake by the Na+ pump. Upon increasing extracellular K+ concentration from 3 to 12 mM, the NH4(+)-dependent, ouabain-induced increase in pHi and reduction in JtCO2 were attenuated. In the presence but not in the absence of NH4+, reducing Na+ pump activity by limiting Na+ entry reduced JtCO2 and attenuated ouabain-induced alkalinization. Ouabain-induced alkalinization was not dependent on the presence of HCO3-/CO2 and was not reproduced with BaCl2 or bumetanide addition. Therefore, ouabain-induced alkalinization is not mediated by the Na(+)-K(+)-2Cl- cotransporter or a HCO3- transporter and is not mediated by changes in membrane potential. In conclusion, on the basolateral membrane of the tIMCD cell, NH4+ uptake is mediated by the Na(+)-K(+)-ATPase. These data provide an explanation for the reduction in net acid secretion in the tIMCD observed following administration of amiloride or with dietary K+ loading.

摘要

在大鼠终末内髓集合管(tIMCD)中,钠泵抑制会减少跨上皮净酸分泌(JtAMM)[JH = 总二氧化碳吸收量(JtCO2)+ 总氨分泌量],并提高静息细胞内pH值(pHi)。在没有NH4+的情况下,或者用另一种弱碱替代NH4+时,加入哇巴因后pHi的升高和JH的降低不会出现。本研究的目的是探讨加入哇巴因后,NH4+依赖的JtCO2降低和pHi升高的机制。我们假设NH4+通过钠钾ATP酶进入tIMCD细胞,并在细胞质中释放质子。为了验证这一假设,从脱氧皮质酮处理的大鼠中分离出tIMCD,并在体外用含有6 mM NH4Cl的对称生理盐溶液进行灌注。由于K+和NH4+竞争钠泵上的共同结合位点,增加细胞外K+应会限制钠泵对NH4+(进而净H+)的摄取。将细胞外K+浓度从3 mM增加到12 mM后,NH4+依赖的、哇巴因诱导的pHi升高和JtCO2降低减弱。在有NH4+存在但无NH4+不存在的情况下,通过限制Na+进入来降低钠泵活性会降低JtCO2,并减弱哇巴因诱导的碱化作用。哇巴因诱导的碱化不依赖于HCO3-/CO2的存在,加入BaCl2或布美他尼也不会重现这种现象。因此,哇巴因诱导的碱化不是由钠钾氯共转运体或HCO3-转运体介导的,也不是由膜电位变化介导的。总之,在tIMCD细胞的基底外侧膜上,NH4+的摄取是由钠钾ATP酶介导的。这些数据为服用阿米洛利或饮食中钾负荷增加后tIMCD中净酸分泌减少提供了解释。

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