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大鼠内髓集合管液泡H⁺-腺苷三磷酸酶对慢性酸或碱负荷的适应性

Adaptation of inner medullary collecting duct vacuolar H-adenosine triphosphatase to chronic acid or alkali loads in the rat.

作者信息

Bastani B, McEnaney S, Yang L, Gluck S

机构信息

Division of Nephrology, St. Louis University Medical Center, MO 63110.

出版信息

Exp Nephrol. 1994 May-Jun;2(3):171-5.

PMID:7922269
Abstract

Acidosis increases and alkalosis decreases proton secretion in the inner medullary collecting duct (IMCD). We examined the mechanism of this adaptation by studying the immunocytochemical distribution of the vacuolar H-adenosine triphosphatase (ATPase) in the IMCD from rats subjected to acid or alkali loads for a mean duration of 4 and 9 days. For immunocytochemical staining, a monoclonal antibody to the 31-kD subunit of the bovine kidney vacuolar H-ATPase was used. Intercalated cells were present only in the initial IMCD, and the principal cells and IMCD cells showed no appreciable H-ATPase staining under any experimental conditions. We found significant adaptive changes in the distribution of H-ATPase in the intercalated cells of the IMCD. H-ATPase staining in acid-loaded rats shifted from cytoplasmic vesicles to apical plasma membrane, whereas in alkali-loaded rats cytoplasmic vesicular staining was enhanced and staining of plasma membrane disappeared. These adaptive changes were most prominent on day 4 of acid-loaded and days 4 and 9 of alkali-loaded rats. Our results indicate that translocation of the H-ATPase pump between cytoplasmic vesicles and apical plasma membrane of the intercalated cells is an important mechanism is adaptation of the IMCD to chronic acid base perturbations.

摘要

酸中毒会增加而碱中毒会减少髓质内集合管(IMCD)中的质子分泌。我们通过研究空泡型H⁺-腺苷三磷酸酶(ATP酶)在平均4天和9天接受酸或碱负荷的大鼠IMCD中的免疫细胞化学分布,来探究这种适应性的机制。对于免疫细胞化学染色,使用了针对牛肾空泡型H⁺-ATP酶31-kD亚基的单克隆抗体。闰细胞仅存在于IMCD起始段,在任何实验条件下,主细胞和IMCD细胞均未显示出明显的H⁺-ATP酶染色。我们发现IMCD闰细胞中H⁺-ATP酶的分布存在显著的适应性变化。酸负荷大鼠的H⁺-ATP酶染色从细胞质囊泡转移至顶端质膜,而碱负荷大鼠的细胞质囊泡染色增强且质膜染色消失。这些适应性变化在酸负荷第4天以及碱负荷第4天和第9天最为显著。我们的结果表明,闰细胞质囊泡与顶端质膜之间H⁺-ATP酶泵的易位是IMCD适应慢性酸碱紊乱的重要机制。

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