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Rnf2 与 Af9 的物理和功能相互作用调节肾集合管细胞系中 α-ENaC 基因的基础和醛固酮刺激转录。

Physical and functional interaction of Rnf2 with Af9 regulates basal and aldosterone-stimulated transcription of the α-ENaC gene in a renal collecting duct cell line.

机构信息

*Department of Internal Medicine, The University of Texas Medical School at Houston, Houston, TX 77030, U.S.A.

出版信息

Biosci Rep. 2013 Oct 25;33(5):e00076. doi: 10.1042/BSR20130086.

Abstract

The physical and functional interaction of Rnf2 (RING finger protein 2), a central component of the PRC (Polycomb repressive complex) 1 and Af9 (ALL1-fused gene from chromosome 9 protein), an aldosterone-sensitive transcription factor, in regulating basal and aldosterone-stimulated transcription of the α-ENaC (epithelial Na+ channel α-subunit) gene was explored in mIMCD3 CD (collecting duct) cells. Since Rnf2 lacks DNA-specific binding activity, other factors must mediate its site-specific chromatin recruitment. Rnf2 and Af9 co-localized in the nucleus and co-immunoprecipitated. A GST (glutathione transferase)-Af9 carboxy-terminal fusion protein directly interacted with in vitro translated Rnf2 in GST pull-down assays. Rnf2 knock down enhanced basal and aldosterone-stimulated α-ENaC mRNA levels and α-ENaC promoter activity. ChIP/QPCR (chromatin immunoprecipitation/quantitative PCR) assays demonstrated enrichment of Rnf2, H2AK119 (mono-ubiquitinated histone H2A lysine 119), and H3K27me3 (histone H3 lysine 27 trimethylated), a PRC2 chromatin mark, at multiple α-ENaC promoter subregions corresponding to regions of known Af9 enrichment, under basal conditions. Sequential ChIP confirmed Rnf2-Af9 co-occupancy of the α-ENaC promoter. Aldosterone provoked early and sustained depletion of Rnf2, ubiquitinated H2AK119, and trimethylated H3K27 associated with the subregions of the α-ENaC promoter. Thus, Af9 mediates site-selective physical and functional recruitment of Rnf2 to the α-ENaC promoter to constrain basal α-ENaC transcription in collecting duct cells, and aldosterone reverses this process.

摘要

探索了 Rnf2(环指蛋白 2)和 Af9(来自染色体 9 的 ALL1 融合基因蛋白)之间的物理和功能相互作用,Rnf2 是 PRC1(多梳抑制复合物 1)的核心组成部分,Af9 是醛固酮敏感转录因子,在调节 mIMCD3 CD(集合管)细胞中 α-ENaC(上皮 Na+通道 α 亚基)基因的基础转录和醛固酮刺激转录中的作用。由于 Rnf2 缺乏 DNA 特异性结合活性,因此必须有其他因素介导其特异性染色质募集。Rnf2 和 Af9 在核内共定位并共免疫沉淀。GST(谷胱甘肽转移酶)-Af9 羧基末端融合蛋白在 GST 下拉测定中与体外翻译的 Rnf2 直接相互作用。Rnf2 敲低增强了基础和醛固酮刺激的 α-ENaC mRNA 水平和 α-ENaC 启动子活性。ChIP/QPCR(染色质免疫沉淀/定量 PCR)分析表明,在基础条件下,多个 α-ENaC 启动子亚区富集了 Rnf2、H2AK119(单泛素化组蛋白 H2A 赖氨酸 119)和 H3K27me3(组蛋白 H3 赖氨酸 27 三甲基化),这是 PRC2 染色质标记,对应于已知 Af9 富集的区域,在基础条件下。顺序 ChIP 证实了 Rnf2-Af9 在 α-ENaC 启动子上的共占据。醛固酮引发了 Rnf2、泛素化的 H2AK119 和与 α-ENaC 启动子亚区相关的 H3K27me3 的早期和持续耗竭。因此,Af9 介导 Rnf2 对 α-ENaC 启动子的选择性物理和功能募集,以限制集合管细胞中基础 α-ENaC 转录,而醛固酮逆转了这一过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79a2/3979232/6c9172962bac/bsr2013-0086i001.jpg

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