Saxena S, Quick M W, Tousson A, Oh Y, Warnock D G
Nephrology Research and Training Center, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.
J Biol Chem. 1999 Jul 23;274(30):20812-7. doi: 10.1074/jbc.274.30.20812.
Amiloride-sensitive sodium channels mediate sodium entry across the apical membrane of epithelial cells in variety of tissues. The rate of Na(+) entry is controlled by the regulation of the epithelial sodium channel (ENaC) complex. Insertion/retrieval of the ENaC complex into the apical membrane as well as direct kinetic effects at the single channel level are recognized mechanisms of regulation. Recent data suggest that the syntaxin family of targeting proteins interact with and functionally regulate a number of ion channels and pumps. To evaluate the role of these proteins in regulating ENaC activity, we co-expressed rat ENaC cRNA (alpha, beta, gamma subunits) with syntaxin 1A or 3 cRNAs in Xenopus oocytes. Basal ENaC currents were inhibited by syntaxin 1A and stimulated by syntaxin 3. Both syntaxin 1A and syntaxin 3 could be co-immunoprecipitated with ENaC subunit proteins, suggesting physical interaction. Interestingly, immunofluorescence data suggest that with either syntaxin isoform the ENaC-associated epifluorescence on the oocyte surface is enhanced. These data indicate that (i) both syntaxin isoforms increase the net externalization of the ENaC channel complex, (ii) that the functional regulation is isoform specific, and (iii) suggest that ENaC may be regulated through mechanisms involving protein-protein interactions.
氨氯地平敏感的钠通道介导钠跨多种组织上皮细胞顶端膜的进入。Na⁺进入的速率由上皮钠通道(ENaC)复合体的调节控制。ENaC复合体插入/回收至顶端膜以及在单通道水平的直接动力学效应是公认的调节机制。最近的数据表明,靶向蛋白的 syntaxin 家族与许多离子通道和泵相互作用并在功能上对其进行调节。为了评估这些蛋白在调节 ENaC 活性中的作用,我们在非洲爪蟾卵母细胞中共同表达了大鼠 ENaC cRNA(α、β、γ亚基)与 syntaxin 1A 或 3 cRNAs。基础 ENaC 电流受到 syntaxin 1A 的抑制,并受到 syntaxin 3 的刺激。syntaxin 1A 和 syntaxin 3 都可以与 ENaC 亚基蛋白进行共免疫沉淀,表明存在物理相互作用。有趣的是,免疫荧光数据表明,无论哪种 syntaxin 同工型,卵母细胞表面与 ENaC 相关的落射荧光都会增强。这些数据表明:(i)两种 syntaxin 同工型均增加了 ENaC 通道复合体的净外向化;(ii)功能调节具有同工型特异性;(iii)表明 ENaC 可能通过涉及蛋白质-蛋白质相互作用的机制进行调节。