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正常及低钾条件下小鼠H⁺-K⁺-ATP酶α1基因选择性破坏时的H⁺-ATP酶活性

H+-ATPase activity in selective disruption of H+-K+-ATPase alpha 1 gene of mice under normal and K-depleted conditions.

作者信息

Nakamura Suguru

机构信息

Department of Biological Sciences, Murray State University, Murray, Kentucky, USA.

出版信息

J Lab Clin Med. 2006 Jan;147(1):45-51. doi: 10.1016/j.lab.2005.08.013.

Abstract

The outer medullary collecting duct (OMCD) plays an important role in acid-base homeostasis by two luminal proton ATPases, H(+)-ATPase and H(+)-K(+)-ATPase (HKA), both of which are in the intercalated cells (ICs) of OMCD. We showed previously that HKAalpha1 (gastric H(+)-K(+)-ATPase) activity is the essential H(+)-K(+)-ATPase activity under normal conditions, and that HKAalpha2 (colonic H(+)-K(+)-ATPase) is induced and mediates increased proton-secretion under K-depleted conditions. To better understand the role of H(+)-ATPase (potassium-independent) in acid secretion and the relationship between H(+)-ATPase and a specific HKA isoform, we examined H(+)-ATPase activity in the H(+)-K(+)-ATPasealpha1 knockout (KO) mice under normal and K-depleted conditions. Mice were fed a potassium-free diet and studied after 7 days. Segments of the OMCD were perfused in vitro, and intracellular pH (pH(i)) was measured by ratiometric fluorescence microscopy using the pH-sensitive indicator BCECF-AM. The isolated OMCD tubules obtained from mice fed a potassium-free diet were examined by fluorescent immunocytochemistry with an antibody to the 31-kDa subunit of H(+)-ATPase (E-11) and were compared with those obtained from a normal diet. In the absence of Na(+) and K(+), the H(+)-ATPase-mediate pH(i) recovery rates were 6.7 +/- 1.1 x 10(-4) units/s (n = 7 ICs) in wild-type (WT) mice and increased to 8.7 +/- 1.8 x 10(-4) (P < 0.05; n = 6) in HKAalpha1 KO mice. K-independent proton transport activity was significantly inhibited by the H(+)-ATPase inhibitor bafilomycin A(1) (BAF, 10 nM) with luminal applied in both WT and KO mice. Comparison of the results indicated upregulation of BAF-sensitive H(+)-ATPase activity in KO mice. To determine the intracellular localization of H(+)-ATPase in the intercalated cells of OMCD, we dissected the OMCD and performed fluorescent immunocytochemistry with the H(+)-ATPase antibody in the WT and KO mice. In the WT mice, on normal diet, H(+)-ATPase staining distributed diffusely throughout the intercalated cells and was slightly polarized to the apical plasma membrane in the KO mice, consistent with increase in the H(+)-ATPase-mediate pH(i) recovery in the KO mice. One week of a potassium-free diet resulted in a significant increase in the degree of H(+)-ATPase polarization at the apical plasma membrane in both WT and KO mice. Hypokalemia stimulates H(+)-ATPase in the intercalated cells of OMCD of both WT and KO mice. The enhanced activity of H(+)-ATPase plays an important role in compensatory proton secretion in the HKAalpha1 KO mice under normal conditions.

摘要

外髓集合管(OMCD)通过两种管腔质子ATP酶,即H(+)-ATP酶和H(+)-K(+)-ATP酶(HKA),在酸碱平衡中发挥重要作用,这两种酶均存在于OMCD的闰细胞(ICs)中。我们之前表明,在正常条件下,HKAα1(胃H(+)-K(+)-ATP酶)活性是必需的H(+)-K(+)-ATP酶活性,并且在低钾条件下,HKAα2(结肠H(+)-K(+)-ATP酶)被诱导并介导质子分泌增加。为了更好地理解H(+)-ATP酶(钾非依赖性)在酸分泌中的作用以及H(+)-ATP酶与特定HKA亚型之间的关系,我们在正常和低钾条件下检测了H(+)-K(+)-ATP酶α1基因敲除(KO)小鼠的H(+)-ATP酶活性。给小鼠喂食无钾饮食,7天后进行研究。体外灌注OMCD节段,使用pH敏感指示剂BCECF-AM通过比率荧光显微镜测量细胞内pH(pH(i))。用抗H(+)-ATP酶31-kDa亚基的抗体(E-11)对从喂食无钾饮食的小鼠获得的分离OMCD小管进行荧光免疫细胞化学检测,并与从正常饮食小鼠获得的小管进行比较。在无Na(+)和K(+)的情况下,野生型(WT)小鼠中H(+)-ATP酶介导的pH(i)恢复率为6.7±1.1×10(-4)单位/秒(n = 7个ICs),在HKAα1 KO小鼠中增加到8.7±1.8×10(-4)(P < 0.05;n = 6)。在WT和KO小鼠中,管腔应用H(+)-ATP酶抑制剂巴弗洛霉素A(1)(BAF,10 nM)可显著抑制钾非依赖性质子转运活性。结果比较表明KO小鼠中BAF敏感的H(+)-ATP酶活性上调。为了确定H(+)-ATP酶在OMCD闰细胞中的细胞内定位,我们解剖了OMCD并在WT和KO小鼠中用H(+)-ATP酶抗体进行荧光免疫细胞化学检测。在正常饮食的WT小鼠中,H(+)-ATP酶染色在闰细胞中弥漫分布,而在KO小鼠中略微向顶端质膜极化,这与KO小鼠中H(+)-ATP酶介导的pH(i)恢复增加一致。一周的无钾饮食导致WT和KO小鼠顶端质膜处H(+)-ATP酶极化程度显著增加。低钾血症刺激WT和KO小鼠OMCD闰细胞中的H(+)-ATP酶。在正常条件下,H(+)-ATP酶活性增强在HKAα1 KO小鼠的代偿性质子分泌中起重要作用。

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