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去泛素化酶UCH-L3调节上皮钠通道的顶端膜再循环。

The deubiquitinating enzyme UCH-L3 regulates the apical membrane recycling of the epithelial sodium channel.

作者信息

Butterworth Michael B, Edinger Robert S, Ovaa Huib, Burg Danny, Johnson John P, Frizzell Raymond A

机构信息

Department of Cell Biology and Physiology, School of Medicine, University of Pittsburgh, Pittsburgh, PA 15261, USA.

出版信息

J Biol Chem. 2007 Dec 28;282(52):37885-93. doi: 10.1074/jbc.M707989200. Epub 2007 Oct 29.

Abstract

The epithelial sodium channel (ENaC) is ubiquitinated by the E3 ligase Nedd4-2 at the apical membranes of polarized cortical collecting duct (CCD) epithelial cells. This leads to ENaC endocytosis and possible degradation. Because ENaC is known to recycle at the apical membranes of CCD cells, deubiquitinating enzymes (DUBs) are likely involved in regulating ENaC surface density by facilitating ENaC recycling as opposed to degradation. Using a chemical probe approach to tag active DUBs, we identified ubiquitin C-terminal hydrolase (UCH) isoform L3 as the predominant DUB in endosomal compartments of CCD cells. Blocking UCH-L3 activity or reducing its expression by selective knockdown increased ENaC ubiquitination and resulted in its removal from the apical membranes of CCD cells. Functionally this caused a rapid reduction in transepithelial Na(+) currents across the CCD epithelia. Surface biotinylation demonstrated the loss of ENaC from the apical surface when UCH-L3 was inhibited. Whole cell or apical surface immunoprecipitation demonstrated increased ENaC ubiquitination with UCH-L3 inhibition. This constitutes a novel function for UCH in epithelia and in the regulation of ion channels and demonstrates the dynamic regulation of apically located ENaC by recycling, which is facilitated by this DUB.

摘要

上皮钠通道(ENaC)在极化的皮质集合管(CCD)上皮细胞的顶端膜被E3连接酶Nedd4-2泛素化。这导致ENaC内吞作用并可能降解。由于已知ENaC在CCD细胞的顶端膜循环利用,去泛素化酶(DUBs)可能通过促进ENaC循环利用而非降解来参与调节ENaC的表面密度。我们使用化学探针方法标记活性DUBs,鉴定出泛素C末端水解酶(UCH)同工型L3是CCD细胞内体区室中的主要DUB。阻断UCH-L3活性或通过选择性敲低降低其表达会增加ENaC泛素化,并导致其从CCD细胞的顶端膜上移除。在功能上,这导致跨CCD上皮的跨上皮Na(+)电流迅速降低。表面生物素化显示当UCH-L3被抑制时,ENaC从顶端表面丢失。全细胞或顶端表面免疫沉淀显示,抑制UCH-L3会增加ENaC泛素化。这构成了UCH在上皮细胞以及离子通道调节中的新功能,并证明了通过这种DUB促进的循环利用对顶端定位的ENaC的动态调节。

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