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大鼠肾脏中ROMK钾通道在远端肾单位顶膜的定位。

Localization of the ROMK potassium channel to the apical membrane of distal nephron in rat kidney.

作者信息

Kohda Y, Ding W, Phan E, Housini I, Wang J, Star R A, Huang C L

机构信息

Department of Medicine, University of Texas Southwestern Medical Center, Dallas 75235-8856, USA.

出版信息

Kidney Int. 1998 Oct;54(4):1214-23. doi: 10.1046/j.1523-1755.1998.00120.x.

Abstract

BACKGROUND

The apical potassium (K+) channels mediate K+ recycling in thick ascending limb (TAL) and K+ secretion in cortical collecting duct (CCD). Recently, the cDNAs for a family of renal K+ channels, ROMK1, -2 and -3, were identified. Based on the biophysical properties and mRNA distribution, it is believed that these ROMK cDNAs encode the apical K+ channels of TAL and CCD. However, the information for cellular and subcellular localization of the ROMK proteins in these tubules is still not available.

METHODS

Paraffin or frozen kidney sections from adult Sprague-Dawley rats were stained by polyclonal antibodies against the N- and C-terminal domain of ROMK. Immunoreactive staining was visualized by color development from horseradish peroxidase reaction. Membrane homogenates from kidney were analyzed by Western blot analysis.

RESULTS

The polyclonal antibodies against cytoplasmic epitope of ROMK recognized a approximately 42 kD protein in the membrane homogenates from kidney, but not from liver. Staining by immunocytochemistry revealed that ROMK channels were localized to the apical membranes of the distal nephron in cortex and outer medulla, including thick ascending limb and collecting tubule. ROMK staining was absent in glomerulus, proximal tubule and inner medulla. Double staining of the tissue section with both ROMK-specific and H+-ATPase-specific antibodies revealed labeling of ROMK in the principal cells of the collecting tubules.

CONCLUSIONS

These results further strengthen the idea that ROMK channels play important roles in the recycling of K+ in TAL and the secretion of K+ in CCD.

摘要

背景

顶端钾(K+)通道介导厚壁升支粗段(TAL)中的K+再循环以及皮质集合管(CCD)中的K+分泌。最近,已鉴定出一个肾K+通道家族(ROMK1、-2和-3)的cDNA。基于其生物物理特性和mRNA分布,人们认为这些ROMK cDNA编码TAL和CCD的顶端K+通道。然而,关于这些肾小管中ROMK蛋白的细胞和亚细胞定位信息仍然缺乏。

方法

用针对ROMK N端和C端结构域的多克隆抗体对成年Sprague-Dawley大鼠的石蜡或冰冻肾切片进行染色。通过辣根过氧化物酶反应显色来观察免疫反应性染色。用蛋白质免疫印迹分析法分析肾膜匀浆。

结果

针对ROMK胞质表位的多克隆抗体在肾膜匀浆中识别出一种约42 kD的蛋白,而在肝膜匀浆中未识别出。免疫细胞化学染色显示,ROMK通道定位于皮质和外髓质远端肾单位的顶端膜,包括厚壁升支粗段和集合小管。肾小球、近端小管和内髓质中无ROMK染色。用ROMK特异性抗体和H+-ATP酶特异性抗体对组织切片进行双重染色,结果显示集合小管主细胞中有ROMK标记。

结论

这些结果进一步强化了ROMK通道在TAL中K+再循环以及CCD中K+分泌过程中发挥重要作用这一观点。

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