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磷脂酰肌醇-3,4,5-三磷酸介导醛固酮对上皮钠通道(ENaC)的刺激作用,并与γ-ENaC相互作用。

Phosphatidylinositol 3,4,5-trisphosphate mediates aldosterone stimulation of epithelial sodium channel (ENaC) and interacts with gamma-ENaC.

作者信息

Helms My N, Liu Lian, Liang You-You, Al-Khalili Otor, Vandewalle Alain, Saxena Sunil, Eaton Douglas C, Ma He-Ping

机构信息

Department of Physiology, Emory University School of Medicine, Atlanta, Georgia 30322, USA.

出版信息

J Biol Chem. 2005 Dec 9;280(49):40885-91. doi: 10.1074/jbc.M509646200. Epub 2005 Oct 4.

Abstract

Whole cell voltage clamp experiments were performed in a mouse cortical collecting duct principal cell line using patch pipettes back-filled with a solution containing phosphatidylinositol 3,4,5-trisphosphate (PIP(3)). PIP(3) significantly increased amiloridesensitive current in control cells but not in the cells prestimulated by aldosterone. Additionally, aldosterone stimulated amiloridesensitive current in control cells, but not in the cells that expressed a PIP(3)-binding protein (Grp1-PH), which sequestered intracellular PIP(3). 12 amino acids from the N-terminal tail (APGEKIKAKIKK) of gamma-epithelial sodium channel (gamma-ENaC) were truncated by PCRbased mutagenesis (gammaT-ENaC). Whole cell and confocal microscopy experiments were conducted in Madin-Darby canine kidney cells co-expressing alpha- and beta-ENaC only or with either gamma-ENaC or gamma(T)-ENaC. The data demonstrated that the N-terminal tail truncation significantly decreased amiloride-sensitive current and that both the N-terminal tail truncation and LY-294002 (a PI3K inhibitor) prevented ENaC translocation to the plasmamembrane. These data suggest that PIP(3) mediates aldosterone-induced ENaC activity and trafficking and that the N-terminal tail of gamma-ENaC is necessary for channel trafficking, probably channel gating as well. Additionally, we demonstrated a novel interaction between gamma-ENaC and PIP(3).

摘要

使用回灌含磷脂酰肌醇3,4,5 - 三磷酸(PIP(3))溶液的膜片钳微电极,在小鼠皮质集合管主细胞系中进行全细胞电压钳实验。PIP(3)显著增加了对照细胞中阿米洛利敏感电流,但在经醛固酮预刺激的细胞中未增加。此外,醛固酮刺激了对照细胞中的阿米洛利敏感电流,但在表达PIP(3)结合蛋白(Grp1 - PH)的细胞中未刺激,该蛋白可隔离细胞内PIP(3)。通过基于PCR的诱变(γT - ENaC)截短了γ - 上皮钠通道(γ - ENaC)N末端尾巴的12个氨基酸(APGEKIKAKIKK)。在仅共表达α - 和β - ENaC或与γ - ENaC或γ(T) - ENaC共表达的Madin - Darby犬肾细胞中进行全细胞和共聚焦显微镜实验。数据表明,N末端尾巴截短显著降低了阿米洛利敏感电流,并且N末端尾巴截短和LY - 294002(一种PI3K抑制剂)均阻止ENaC转运至质膜。这些数据表明,PIP(3)介导醛固酮诱导的ENaC活性和转运,并且γ - ENaC的N末端尾巴对于通道转运是必需的,可能对通道门控也是必需的。此外,我们证明了γ - ENaC与PIP(3)之间存在新的相互作用。

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