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Pendrin 的丰度、亚细胞分布和功能不受 αENaC 基因缺失或 ENaC 通道活性增加的影响。

Pendrin abundance, subcellular distribution, and function are unaffected by either αENaC gene ablation or by increasing ENaC channel activity.

机构信息

Institute of Anatomy, University of Zurich, Zurich, Switzerland.

Division of Renal Medicine, Department of Medicine, Emory University, Atlanta, GA, 30322, USA.

出版信息

Pflugers Arch. 2023 May;475(5):607-620. doi: 10.1007/s00424-023-02797-w. Epub 2023 Mar 29.

Abstract

The intercalated cell Cl/HCO exchanger, pendrin, modulates ENaC subunit abundance and function. Whether ENaC modulates pendrin abundance and function is however unknown. Because αENaC mRNA has been detected in pendrin-positive intercalated cells, we hypothesized that ENaC, or more specifically the αENaC subunit, modulates intercalated cell function. The purpose of this study was therefore to determine if αENaC is expressed at the protein level in pendrin-positive intercalated cells and to determine if αENaC gene ablation or constitutively upregulating ENaC activity changes pendrin abundance, subcellular distribution, and/or function. We observed diffuse, cytoplasmic αENaC label in pendrin-positive intercalated cells from both mice and rats, with much lower label intensity in pendrin-negative, type A intercalated cells. However, while αENaC gene ablation within principal and intercalated cells of the CCD reduced Cl absorption, it did not change pendrin abundance or subcellular distribution in aldosterone-treated mice. Further experiments used a mouse model of Liddle's syndrome to explore the effect of increasing ENaC channel activity on pendrin abundance and function. The Liddle's variant did not increase either total or apical plasma membrane pendrin abundance in aldosterone-treated or in NaCl-restricted mice. Similarly, while the Liddle's mutation increased total Cl absorption in CCDs from aldosterone-treated mice, it did not significantly affect the change in Cl absorption seen with pendrin gene ablation. We conclude that in rats and mice, αENaC localizes to pendrin-positive ICs where its physiological role remains to be determined. While pendrin modulates ENaC abundance, subcellular distribution, and function, ENaC does not have a similar effect on pendrin.

摘要

闰细胞 Cl/HCO3-交换器,Pendrin,调节 ENaC 亚基的丰度和功能。然而,ENaC 是否调节 Pendrin 的丰度和功能尚不清楚。由于αENaC mRNA 已在 Pendrin 阳性闰细胞中检测到,我们假设 ENaC,或更具体地说,αENaC 亚基,调节闰细胞功能。因此,本研究的目的是确定αENaC 是否在 Pendrin 阳性闰细胞中表达蛋白水平,并确定αENaC 基因敲除或持续上调 ENaC 活性是否改变 Pendrin 的丰度、亚细胞分布和/或功能。我们观察到来自小鼠和大鼠的 Pendrin 阳性闰细胞中弥散的细胞质αENaC 标记,而在 Pendrin 阴性、A型闰细胞中的标记强度要低得多。然而,尽管 CCD 中的主细胞和闰细胞中的αENaC 基因敲除减少了 Cl 吸收,但它并没有改变醛固酮处理小鼠中的 Pendrin 丰度或亚细胞分布。进一步的实验使用 Liddle 综合征的小鼠模型来探讨增加 ENaC 通道活性对 Pendrin 丰度和功能的影响。Liddle 变体并未增加醛固酮处理或 NaCl 限制小鼠中的总或顶端质膜 Pendrin 丰度。同样,尽管 Liddle 突变增加了醛固酮处理小鼠 CCD 中的总 Cl 吸收,但它并没有显著影响 Pendrin 基因敲除导致的 Cl 吸收变化。我们的结论是,在大鼠和小鼠中,αENaC 定位于 Pendrin 阳性 ICs,其生理作用仍有待确定。虽然 Pendrin 调节 ENaC 的丰度、亚细胞分布和功能,但 ENaC 对 Pendrin 没有类似的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a763/10105674/37c1d8c4053f/424_2023_2797_Fig1_HTML.jpg

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