Mastroberardino L, Spindler B, Forster I, Loffing J, Assandri R, May A, Verrey F
Institute of Physiology, University of Zurich, CH-8057 Zurich, Switzerland.
Mol Biol Cell. 1998 Dec;9(12):3417-27. doi: 10.1091/mbc.9.12.3417.
The small G protein K-Ras2A is rapidly induced by aldosterone in A6 epithelia. In these Xenopus sodium reabsorbing cells, aldosterone rapidly activates preexisting epithelial Na+ channels (XENaC) via a transcriptionally mediated mechanism. In the Xenopus oocytes expression system, we tested whether the K-Ras2A pathway impacts on XENaC activity by expressing XENaC alone or together with XK-Ras2A rendered constitutively active (XK-Ras2AG12V). As a second control, XENaC-expressing oocytes were treated with progesterone, a sex steroid that induces maturation of the oocytes similarly to activated Ras. Progesterone or XK-Ras2AG12V led to oocyte maturation characterized by a decrease in surface area and endogenous Na+ pump function. In both conditions, the surface expression of exogenous XENaC's was also decreased; however, in comparison with progesterone-treated oocytes, XK-ras2AG12V-coinjected oocytes expressed a fivefold higher XENaC-mediated macroscopic Na+ current that was as high as that of control oocytes. Thus, the Na+ current per surface-expressed XENaC was increased by XK-Ras2AG12V. The chemical driving force for Na+ influx was not changed, suggesting that XK-Ras2AG12V increased the mean activity of XENaCs at the oocyte surface. These observations raise the possibility that XK-Ras2A, which is the first regulatory protein known to be transcriptionally induced by aldosterone, could play a role in the control of XENaC function in aldosterone target cells.
小G蛋白K-Ras2A在A6上皮细胞中可被醛固酮快速诱导。在这些非洲爪蟾钠重吸收细胞中,醛固酮通过转录介导机制快速激活预先存在的上皮钠通道(XENaC)。在非洲爪蟾卵母细胞表达系统中,我们通过单独表达XENaC或与组成型激活的XK-Ras2A(XK-Ras2AG12V)共同表达,来测试K-Ras2A途径是否影响XENaC活性。作为第二个对照,用孕酮处理表达XENaC的卵母细胞,孕酮是一种性类固醇,与激活的Ras类似,可诱导卵母细胞成熟。孕酮或XK-Ras2AG12V导致卵母细胞成熟,其特征为表面积减小和内源性钠泵功能降低。在这两种情况下,外源性XENaC的表面表达也降低;然而,与孕酮处理的卵母细胞相比,共注射XK-ras2AG12V的卵母细胞表达的XENaC介导的宏观钠电流高五倍,与对照卵母细胞一样高。因此,XK-Ras2AG12V增加了每个表面表达的XENaC的钠电流。钠内流的化学驱动力没有改变,这表明XK-Ras2AG12V增加了卵母细胞表面XENaC的平均活性。这些观察结果提出了一种可能性,即XK-Ras2A作为已知第一个被醛固酮转录诱导的调节蛋白,可能在醛固酮靶细胞中XENaC功能的控制中发挥作用。