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人上皮钠通道α亚基羧基末端多态性的细胞内运输受酪蛋白激酶1调控。

Intracellular trafficking of a polymorphism in the COOH terminus of the alpha-subunit of the human epithelial sodium channel is modulated by casein kinase 1.

作者信息

Yan Wusheng, Spruce Lynn, Rosenblatt Michael M, Kleyman Thomas R, Rubenstein Ronald C

机构信息

Division of Pulmonary Medicine, The Children's Hospital of Philadelphia, PA, USA.

出版信息

Am J Physiol Renal Physiol. 2007 Sep;293(3):F868-76. doi: 10.1152/ajprenal.00194.2007. Epub 2007 Jun 27.

Abstract

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, and the context of this residue in the COOH terminus of alpha-hENaC is important for this effect. Query of a phosphoprotein database suggested that the alpha-T663 residue of hENaC might be a substrate for phosphorylation by casein kinase 1 (CK1). We tested the hypotheses that phosphorylation of alpha-T663-hENaC by CK1 would regulate the increased functional and surface expression of alpha-T663-hENaC vs. alpha-A663-hENaC in oocytes. General inhibition of CK1 with IC261 decreased the functional and surface expression of alpha-T663-hENaC, but not alpha-A663-hENaC. This decrease in alpha-T663-hENaC functional expression resulted from reduced delivery of alpha-T663-hENaC to the oocyte membrane. IC261 also inhibited the functional expression of alpha-T692-mENaC and a chimeric m(1-678)/h(650-669)alpha-T663, mbetagamma ENaC, but not alpha-A692-mENaC or m(1-678)/h(650-669)alpha-A663, mbetagamma ENaC. These data suggest that additional residues outside of the alpha-hENaC COOH terminus are important for modulation of alpha-T663-hENaC trafficking by CK1. Overexpression of CK1alpha did not alter functional expression of alpha-T663-hENaC. In contrast, modest overexpression of CK1delta enhanced, whereas higher levels of CK1delta overexpression inhibited alpha-T663-hENaC functional expression. CK1 did not phosphorylate the COOH terminus of either alpha-T663-hENaC or alpha-A663-hENaC in vitro. These data suggest that CK1, and perhaps specifically CK1delta, regulates the intracellular trafficking of the alpha-A663T functional polymorphism of hENaC indirectly by altering the rate of alpha-T663-hENaC biosynthesis and/or delivery to the plasma membrane.

摘要

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αβγ-hENaC的功能和表面表达,并且α-hENaC羧基末端中该残基的背景对于这种效应很重要。对磷酸化蛋白数据库的查询表明,hENaC的α-T663残基可能是酪蛋白激酶1(CK1)磷酸化的底物。我们测试了以下假设:CK1对α-T663-hENaC的磷酸化将调节卵母细胞中α-T663-hENaC相对于α-A663-hENaC功能和表面表达的增加。用IC261对CK1进行一般抑制会降低α-T663-hENaC的功能和表面表达,但不会降低α-A663-hENaC的功能和表面表达。α-T663-hENaC功能表达的这种降低是由于α-T663-hENaC向卵母细胞膜的转运减少所致。IC261还抑制了α-T692-mENaC和嵌合的m(1-678)/h(650-669)α-T663、mbetaγ ENaC的功能表达,但不抑制α-A692-mENaC或m(1-678)/h(650-669)α-A663、mbetaγ ENaC的功能表达。这些数据表明,α-hENaC羧基末端之外的其他残基对于CK1调节α-T663-hENaC的转运很重要。CK1α的过表达未改变α-T, CK1α的过表达并未改变α-T663-hENaC的功能表达。相反,适度过表达CKlδ会增强α-T663-hENaC的功能表达,而更高水平的CKlδ过表达则会抑制α-T663-hENaC的功能表达。CK1在体外未使α-T663-hENaC或α-A663-hENaC的羧基末端磷酸化。这些数据表明,CK1,可能特别是CK1δ,通过改变α-T663-hENaC生物合成和/或向质膜转运的速率,间接调节hENaC的α-A663T功能多态性的细胞内转运。

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