Department of Internal Medicine, The University of Texas Health Science Center at Houston, Houston, Texas, United States of America.
PLoS One. 2011;6(11):e27429. doi: 10.1371/journal.pone.0027429. Epub 2011 Nov 8.
Our previous work in 293T cells and AF17(-/-) mice suggests that AF17 upregulates expression and activity of the epithelial Na(+) channel (ENaC), possibly by relieving Dot1a-AF9-mediated repression. However, whether and how AF17 directly regulates Dot1a cellular distribution and ENaC function in renal collecting duct cells remain unaddressed. Here, we report our findings in mouse cortical collecting duct M-1 cells that overexpression of AF17 led to preferential distribution of Dot1a in the cytoplasm. This effect could be blocked by nuclear export inhibitor leptomycin B. siRNA-mediated depletion of AF17 caused nuclear accumulation of Dot1a. AF17 overexpression elicited multiple effects that are reminiscent of aldosterone action. These effects include 1) increased mRNA and protein expression of the three ENaC subunits (α, β and γ) and serum- and glucocorticoid inducible kinase 1, as revealed by real-time RT-qPCR and immunoblotting analyses; 2) impaired Dot1a-AF9 interaction and H3 K79 methylation at the αENaC promoter without affecting AF9 binding to the promoter, as evidenced by chromatin immunoprecipitation; and 3) elevated ENaC-mediated Na(+) transport, as analyzed by measurement of benzamil-sensitive intracellular [Na(+)] and equivalent short circuit current using single-cell fluorescence imaging and an epithelial Volt-ohmmeter, respectively. Knockdown of AF17 elicited opposite effects. However, combination of AF17 overexpression or depletion with aldosterone treatment did not cause an additive effect on mRNA expression of the ENaC subunits. Taken together, we conclude that AF17 promotes Dot1a nuclear export and upregulates basal, but not aldosterone-stimulated ENaC expression, leading to an increase in ENaC-mediated Na(+) transport in renal collecting duct cells.
我们之前在 293T 细胞和 AF17(-/-) 小鼠中的工作表明,AF17 通过解除 Dot1a-AF9 介导的抑制作用而上调上皮钠通道 (ENaC) 的表达和活性。然而,AF17 是否以及如何直接调节肾集合管细胞中的 Dot1a 细胞分布和 ENaC 功能仍未得到解决。在这里,我们报告了在小鼠皮质集合管 M-1 细胞中的发现,即 AF17 的过表达导致 Dot1a 优先分布在细胞质中。这种效应可以被核输出抑制剂莱普霉素 B 阻断。siRNA 介导的 AF17 耗竭导致 Dot1a 核内积累。AF17 的过表达引起了多种类似于醛固酮作用的效应。这些效应包括:1)实时 RT-qPCR 和免疫印迹分析显示,三种 ENaC 亚基(α、β和γ)和血清和糖皮质激素诱导激酶 1 的 mRNA 和蛋白表达增加;2)Dot1a-AF9 相互作用和 H3 K79 甲基化受损,而不影响 AF9 与启动子的结合,如染色质免疫沉淀所证实;3)用单个细胞荧光成像和上皮电压计分别测量苯并咪嗪敏感的细胞内 [Na+] 和等效短路电流,分析 ENaC 介导的 Na+转运增加。AF17 的敲低引起了相反的效果。然而,AF17 的过表达或耗竭与醛固酮处理的组合对 ENaC 亚基的 mRNA 表达没有引起相加效应。总之,我们得出结论,AF17 促进 Dot1a 的核输出,并上调基础而非醛固酮刺激的 ENaC 表达,导致肾集合管细胞中 ENaC 介导的 Na+转运增加。