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Rab蛋白调节结肠上皮HT-29细胞中的上皮钠通道活性。

Rab proteins regulate epithelial sodium channel activity in colonic epithelial HT-29 cells.

作者信息

Saxena Sunil, Singh Madhurima, Engisch Kathrin, Fukuda Mitsunori, Kaur Simarna

机构信息

Center for Cell and Molecular Biology, Department of Chemistry and Chemical Biology, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

出版信息

Biochem Biophys Res Commun. 2005 Dec 2;337(4):1219-23. doi: 10.1016/j.bbrc.2005.09.186. Epub 2005 Oct 7.

Abstract

ENaC, the sodium-selective amiloride-sensitive epithelial channel, mediates electrogenic sodium re-absorption in tight epithelia and is deeply associated with human hypertension. The ENaC expression at plasma membrane requires the regulated transport, processing, and macromolecular assembly in a defined and highly compartmentalized manner. Ras-related Rab GTPases regulate intracellular trafficking during endocytosis, regulated exocytosis, and secretion. To evaluate the role of these proteins in regulating amiloride-sensitive sodium channel activity, multiple Rab isoforms 3, 5, 6, and Rab27a were expressed in HT-29 cells. Rab3 and Rab27a inhibited ENaC currents, while the expression of other Rab isoforms failed to elicit any statistically significant effect on amiloride-sensitive currents. The immunoprecipitation experiments suggest protein-protein interaction of Rab3 and Rab27a with epithelial sodium channel. Biotinylation studies revealed that modulation of ENaC function is due to the reduced apical expression of channel proteins. Study also indicates that Rabs do not appear to affect the steady-state level of total cellular ENaC. Alternatively, introduction of isoform-specific small inhibitory RNA (SiRNA) reversed the Rab-dependent inhibition of amiloride-sensitive currents. These observations point to the involvement of multiple Rab proteins in ENaC transport through intracellular routes like exocytosis, recycling from ER to plasma membrane or degradation and thus serve as potential target for human hypertension.

摘要

上皮钠通道(ENaC)是一种对氨氯地平敏感的钠选择性上皮通道,介导紧密上皮中的电生性钠重吸收,与人类高血压密切相关。ENaC在质膜上的表达需要以特定且高度分隔的方式进行调控运输、加工和大分子组装。Ras相关的Rab GTP酶在胞吞作用、调节性胞吐作用和分泌过程中调节细胞内运输。为了评估这些蛋白质在调节氨氯地平敏感钠通道活性中的作用,在HT - 29细胞中表达了多种Rab亚型3、5、6和Rab27a。Rab3和Rab27a抑制ENaC电流,而其他Rab亚型的表达对氨氯地平敏感电流没有产生任何统计学上的显著影响。免疫沉淀实验表明Rab3和Rab27a与上皮钠通道存在蛋白质 - 蛋白质相互作用。生物素化研究表明,ENaC功能的调节是由于通道蛋白顶端表达的减少。研究还表明,Rab似乎不影响细胞内总ENaC的稳态水平。另外,引入亚型特异性小干扰RNA(SiRNA)可逆转Rab依赖性对氨氯地平敏感电流的抑制。这些观察结果表明多种Rab蛋白通过胞吐作用、从内质网到质膜的循环或降解等细胞内途径参与ENaC运输,因此可作为人类高血压的潜在靶点。

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