Yan Wusheng, Suaud Laurence, Kleyman Thomas R, Rubenstein Ronald C
Renal-Electrolyte Division, Department of Medicine, A919 Scaife Hall, 3550 Terrace St., Pittsburgh, PA 15261, USA.
Am J Physiol Renal Physiol. 2006 Feb;290(2):F279-88. doi: 10.1152/ajprenal.00277.2005. Epub 2005 Sep 20.
The A663T polymorphism of the alpha-subunit of the human epithelial sodium channel (hENaC) increases the functional and surface expression of alphabetagamma-hENaC in Xenopus laevis oocytes. The context of this residue in the COOH terminus of alpha-hENaC is important for this effect, as a homologous change in murine ENaC (mENaC), A692T, does not alter functional and surface expression of mENaC. Query of a phosphoprotein database suggested that the alpha-T663 residue might be phosphorylated by PKCdelta. General inhibition of PKC with calphostin C decreased the functional and surface expression of alphaT663-hENaC and not alphaA663-hENaC, and was without effect on alphaA692-mENaC, alphaT692-mENaC, and a chimeric m(1-678)/h(650-669)alphaT663, mbetagamma-ENaC. These data suggest that residues outside of the alpha-hENaC COOH terminus are important for modulation of alphaT663-hENaC trafficking by PKC. In contrast, expression of PKCdelta decreased the functional and surface expression of alphaT663-hENaC and the functional expression of m(1-678)/h(650-669)alphaT663, mbetagamma-ENaC, and was without effect on alphaA663-hENaC, alphaA692-mENaC, or alphaT692-mENaC. PKCdelta did not phosphorylate the COOH terminus of either alphaT663-hENaC or alphaA663-hENaC in vitro, suggesting that it acts indirectly to regulate hENaC trafficking. alphaT663-hENaC was retrieved from the oocyte membrane more slowly than alphaA663-hENaC, and calphostin C increased the rate of alphaT663-hENaC removal from the oocyte membrane to a rate similar to that of alphaA663-hENaC. In contrast, PKCdelta did not alter the rate of removal of alphaT663-hENaC from the oocyte membrane, suggesting that PKCdelta altered rates of alphaT663-hENaC biosynthesis and/or delivery to the plasma membrane. These data are consistent with PKC isoform-specific effects on the intracellular trafficking of alphaT663- vs. alphaA663-hENaC.
人类上皮钠通道(hENaC)α亚基的A663T多态性增加了非洲爪蟾卵母细胞中alphabetagamma-hENaC的功能及表面表达。α-hENaC羧基末端该残基的背景对于此效应很重要,因为小鼠ENaC(mENaC)中的同源变化A692T不会改变mENaC的功能及表面表达。对磷酸化蛋白数据库的查询表明,α-T663残基可能被PKCδ磷酸化。用钙泊三醇C对PKC进行一般性抑制可降低αT663-hENaC而非αA663-hENaC的功能及表面表达,且对αA692-mENaC、αT692-mENaC及嵌合型m(1-678)/h(650-669)αT663、mbetagamma-ENaC无影响。这些数据表明,α-hENaC羧基末端之外的残基对于PKC调节αT663-hENaC转运很重要。相反,PKCδ的表达降低了αT663-hENaC的功能及表面表达以及m(1-678)/h(650-669)αT663、mbetagamma-ENaC的功能表达,且对αA663-hENaC、αA692-mENaC或αT692-mENaC无影响。PKCδ在体外未使αT663-hENaC或αA663-hENaC的羧基末端磷酸化,表明其通过间接作用调节hENaC转运。αT663-hENaC从卵母细胞膜上的回收比αA663-hENaC慢,钙泊三醇C将αT663-hENaC从卵母细胞膜上的去除速率提高到与αA663-hENaC相似的水平。相反,PKCδ未改变αT663-hENaC从卵母细胞膜上的去除速率,表明PKCδ改变了αT663-hENaC的生物合成和/或向质膜的递送速率。这些数据与PKC同工型对αT663-与αA663-hENaC细胞内转运的特异性作用一致。