Pavlov Tengis S, Levchenko Vladislav, Staruschenko Alexander
From the Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226
From the Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226.
J Biol Chem. 2014 Oct 10;289(41):28651-9. doi: 10.1074/jbc.M114.558262. Epub 2014 Aug 27.
The epithelial sodium channel (ENaC) is expressed in the aldosterone-sensitive distal nephron where it performs sodium reabsorption from the lumen. We have recently shown that ENaC activity contributes to the development of salt-induced hypertension as a result of deficiency of EGF level. Previous studies revealed that Rho GDP-dissociation inhibitor α (RhoGDIα) is involved in the control of salt-sensitive hypertension and renal injury via Rac1, which is one of the small GTPases activating ENaC. Here we investigated the intracellular mechanism mediating the involvement of the RhoGDIα/Rac1 axis in the control of ENaC and the effect of EGF on ENaC in this pathway. We demonstrated that RhoGDIα is highly expressed in the cortical collecting ducts of mice and rats, and its expression is down-regulated in Dahl salt-sensitive rats fed a high salt diet. Knockdown of RhoGDIα in cultured cortical collecting duct principal cells increased ENaC subunits expression and ENaC-mediated sodium reabsorption. Furthermore, RhoGDIα deficiency causes enhanced response to EGF treatment. Patch clamp analysis reveals that RhoGDIα significantly decreases ENaC current density and prevents its up-regulation by RhoA and Rac1. Inhibition of Rho kinase with Y27632 had no effects on ENaC response to EGF either in control or RhoGDIα knocked down cells. However, EGF treatment increased levels of active Rac1, which was further enhanced in RhoGDIα-deficient cells. We conclude that changes in the RhoGDIα-dependent pathway have a permissive role in the Rac1-mediated enhancement of ENaC activity observed in salt-induced hypertension.
上皮钠通道(ENaC)在醛固酮敏感的远端肾单位中表达,在那里它从管腔中进行钠重吸收。我们最近发现,由于表皮生长因子(EGF)水平不足,ENaC活性导致盐诱导的高血压的发展。先前的研究表明,Rho GDP解离抑制剂α(RhoGDIα)通过Rac1参与盐敏感性高血压和肾损伤的控制,Rac1是激活ENaC的小GTP酶之一。在这里,我们研究了介导RhoGDIα/Rac1轴参与ENaC控制的细胞内机制以及EGF在该途径中对ENaC的影响。我们证明,RhoGDIα在小鼠和大鼠的皮质集合管中高度表达,并且在喂食高盐饮食的Dahl盐敏感大鼠中其表达下调。在培养的皮质集合管主细胞中敲低RhoGDIα会增加ENaC亚基的表达和ENaC介导的钠重吸收。此外,RhoGDIα缺乏会导致对EGF治疗的反应增强。膜片钳分析表明,RhoGDIα显著降低ENaC电流密度,并阻止其被RhoA和Rac1上调。用Y27632抑制Rho激酶对对照细胞或RhoGDIα敲低细胞中ENaC对EGF的反应均无影响。然而,EGF处理会增加活性Rac1的水平,在RhoGDIα缺陷细胞中进一步增强。我们得出结论,RhoGDIα依赖性途径的变化在盐诱导的高血压中观察到的Rac1介导的ENaC活性增强中起允许作用。