Boulkroun Sheerazed, Ruffieux-Daidié Dorothée, Vitagliano Jean-Jacques, Poirot Olivier, Charles Roch-Philippe, Lagnaz Dagmara, Firsov Dmitri, Kellenberger Stephan, Staub Olivier
Department of Pharmacology and Toxicology, University of Lausanne, Rue du Bugnon 27, CH-1005 Lausanne, Switzerland.
Am J Physiol Renal Physiol. 2008 Oct;295(4):F889-900. doi: 10.1152/ajprenal.00001.2008. Epub 2008 Jul 16.
Adjustment of Na+ balance in extracellular fluids is achieved by regulated Na+ transport involving the amiloride-sensitive epithelial Na+ channel (ENaC) in the distal nephron. In this context, ENaC is controlled by a number of hormones, including vasopressin, which promotes rapid translocation of water and Na+ channels to the plasma membrane and long-term effects on transcription of vasopressin-induced and -reduced transcripts. We have identified a mRNA encoding the deubiquitylating enzyme ubiquitin-specific protease 10 (Usp10), whose expression is increased by vasopressin at both the mRNA and the protein level. Coexpression of Usp10 in ENaC-transfected HEK-293 cells causes a more than fivefold increase in amiloride-sensitive Na+ currents, as measured by whole cell patch clamping. This is accompanied by a three- to fourfold increase in surface expression of alpha- and gamma-ENaC, as shown by cell surface biotinylation experiments. Although ENaC is well known to be regulated by its direct ubiquitylation, Usp10 does not affect the ubiquitylation level of ENaC, suggesting an indirect effect. A two-hybrid screen identified sorting nexin 3 (SNX3) as a novel substrate of Usp10. We show that it is a ubiquitylated protein that is degraded by the proteasome; interaction with Usp10 leads to its deubiquitylation and stabilization. When coexpressed with ENaC, SNX3 increases the channel's cell surface expression, similarly to Usp10. In mCCD(cl1) cells, vasopressin increases SNX3 protein but not mRNA, supporting the idea that the vasopressin-induced Usp10 deubiquitylates and stabilizes endogenous SNX3 and consequently promotes cell surface expression of ENaC.
细胞外液中钠平衡的调节是通过涉及远端肾单位中阿米洛利敏感上皮钠通道(ENaC)的钠转运调控来实现的。在这种情况下,ENaC受多种激素控制,包括血管加压素,它促进水和钠通道快速转运到质膜,并对血管加压素诱导和减少的转录本的转录产生长期影响。我们鉴定出一种编码去泛素化酶泛素特异性蛋白酶10(Usp10)的mRNA,其表达在mRNA和蛋白质水平上均被血管加压素上调。通过全细胞膜片钳测量,在转染ENaC的HEK - 293细胞中共表达Usp10会使阿米洛利敏感的钠电流增加超过五倍。如细胞表面生物素化实验所示,这伴随着α - 和γ - ENaC表面表达增加三到四倍。虽然已知ENaC通过其直接泛素化进行调节,但Usp10并不影响ENaC的泛素化水平,提示存在间接作用。双杂交筛选鉴定出分选连接蛋白3(SNX3)是Usp10的一种新底物。我们表明它是一种被蛋白酶体降解的泛素化蛋白;与Usp10相互作用导致其去泛素化并稳定。当与ENaC共表达时,SNX3与Usp10类似地增加通道的细胞表面表达。在mCCD(cl1)细胞中,血管加压素增加SNX3蛋白但不增加mRNA,支持血管加压素诱导的Usp10使内源性SNX3去泛素化并稳定,从而促进ENaC细胞表面表达的观点。