Ismail Noor A S, Baines Deborah L, Wilson Stuart M
Division of Cardiovascular and Diabetes Medicine, Medical Research Institute, College of Medicine, Dentistry & Nursing, University of Dundee, Dundee DD1 9SY, UK; Biochemistry Department, Faculty of Medicine, University Kebangsaan Malaysia, Jalan Raja Muda Abdul Aziz, 50300 Kuala Lumpur, Malaysia.
Biomedical Sciences Research Centre, St Georges University of London, Cranmer Terrace, London, UK.
Eur J Pharmacol. 2014 Jun 5;732(100):32-42. doi: 10.1016/j.ejphar.2014.03.005. Epub 2014 Mar 18.
Neural precursor cell expressed, developmentally down-regulated protein 4-2 (Nedd4-2) mediates the internalisation / degradation of epithelial Na(+) channel subunits (α-, β- and γ-ENaC). Serum / glucocorticoid inducible kinase 1 (SGK1) and protein kinase A (PKA) both appear to inhibit this process by phosphorylating Nedd4-2-Ser(221), -Ser(327) and -Thr(246). This Nedd4-2 inactivation process is thought to be central to the hormonal control of Na(+) absorption. The present study of H441 human airway epithelial cells therefore explores the effects of SGK1 and / or PKA upon the phosphorylation / abundance of endogenous Nedd4-2; the surface expression of ENaC subunits, and electrogenic Na(+) transport. Effects on Nedd4-2 phosphorylation/abundance and the surface expression of ENaC were monitored by western analysis, whilst Na(+) absorption was quantified electrometrically. Acutely (20min) activating PKA in glucocorticoid-deprived (24h) cells increased the abundance of Ser(221)-phosphorylated, Ser(327)-phosphorylated and total Nedd4-2 without altering the abundance of Thr(246)-phosphorylated Nedd4-2. Activating PKA under these conditions did not cause a co-ordinated increase in the surface abundance of α-, β- and γ-ENaC and had only a very small effect upon electrogenic Na(+) absorption. Activating PKA (20min) in glucocorticoid-treated (0.2µM dexamethasone, 24h) cells, on the other hand, increased the abundance of Ser(221)-, Ser(327)- and Thr(246)-phosphorylated and total Nedd4-2; increased the surface abundance of α-, β- and γ-ENaC and evoked a clear stimulation of Na(+) transport. Chronic glucocorticoid stimulation therefore appears to allow cAMP-dependent control of Na(+) absorption by facilitating the effects of PKA upon the Nedd4-2 and ENaC subunits.
神经前体细胞表达的发育下调蛋白4-2(Nedd4-2)介导上皮性钠离子通道亚基(α-、β-和γ-ENaC)的内化/降解。血清/糖皮质激素诱导激酶1(SGK1)和蛋白激酶A(PKA)似乎都通过使Nedd4-2的丝氨酸221、丝氨酸327和苏氨酸246磷酸化来抑制这一过程。这种Nedd4-2失活过程被认为是激素对钠离子吸收控制的核心。因此,本项对H441人气道上皮细胞的研究探讨了SGK1和/或PKA对内源性Nedd4-2磷酸化/丰度、ENaC亚基的表面表达以及电生性钠离子转运的影响。通过蛋白质印迹分析监测对Nedd4-2磷酸化/丰度和ENaC表面表达的影响,同时通过电测定法定量钠离子吸收。在糖皮质激素剥夺(24小时)的细胞中急性(20分钟)激活PKA可增加丝氨酸221磷酸化、丝氨酸327磷酸化和总Nedd4-2的丰度,而不改变苏氨酸246磷酸化Nedd4-2的丰度。在这些条件下激活PKA不会导致α-、β-和γ-ENaC的表面丰度协同增加,并且对电生性钠离子吸收只有非常小的影响。另一方面,在糖皮质激素处理(0.2μM地塞米松,24小时)的细胞中激活PKA(20分钟),可增加丝氨酸221、丝氨酸327和苏氨酸246磷酸化以及总Nedd4-2的丰度;增加α-、β-和γ-ENaC的表面丰度,并引起明显的钠离子转运刺激。因此,长期糖皮质激素刺激似乎通过促进PKA对Nedd4-2和ENaC亚基的作用,实现对钠离子吸收的cAMP依赖性控制。