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渗透调节转录因子 NFAT5/TonEBP 调节核因子-κB 活性。

Osmoprotective transcription factor NFAT5/TonEBP modulates nuclear factor-kappaB activity.

机构信息

Department of Cellular Physiology and Metabolism, University of Geneva, Geneva, Switzerland.

出版信息

Mol Biol Cell. 2010 Oct 1;21(19):3459-74. doi: 10.1091/mbc.E10-02-0133. Epub 2010 Aug 4.

Abstract

Tonicity-responsive binding-protein (TonEBP or NFAT5) is a widely expressed transcription factor whose activity is regulated by extracellular tonicity. TonEBP plays a key role in osmoprotection by binding to osmotic response element/TonE elements of genes that counteract the deleterious effects of cell shrinkage. Here, we show that in addition to this "classical" stimulation, TonEBP protects cells against hypertonicity by enhancing nuclear factor-κB (NF-κB) activity. We show that hypertonicity enhances NF-κB stimulation by lipopolysaccharide but not tumor necrosis factor-α, and we demonstrate overlapping protein kinase B (Akt)-dependent signal transduction pathways elicited by hypertonicity and transforming growth factor-α. Activation of p38 kinase by hypertonicity and downstream activation of Akt play key roles in TonEBP activity, IκBα degradation, and p65 nuclear translocation. TonEBP affects neither of these latter events and is itself insensitive to NF-κB signaling. Rather, we reveal a tonicity-dependent interaction between TonEBP and p65 and show that NF-κB activity is considerably enhanced after binding of NF-κB-TonEBP complexes to κB elements of NF-κB-responsive genes. We demonstrate the key roles of TonEBP and Akt in renal collecting duct epithelial cells and in macrophages. These findings reveal a novel role for TonEBP and Akt in NF-κB activation on the onset of hypertonic challenge.

摘要

张力应答结合蛋白(TonEBP 或 NFAT5)是一种广泛表达的转录因子,其活性受细胞外张力调节。TonEBP 通过与基因的渗透反应元件/TonE 元件结合,在渗透保护中发挥关键作用,这些元件抵消了细胞收缩的有害影响。在这里,我们表明,除了这种“经典”刺激外,TonEBP 还通过增强核因子-κB(NF-κB)活性来保护细胞免受高渗性的影响。我们表明,高渗性增强了脂多糖但不是肿瘤坏死因子-α对 NF-κB 的刺激,并且我们证明了高渗性和转化生长因子-α引发的重叠蛋白激酶 B(Akt)依赖性信号转导途径。高渗性激活 p38 激酶和下游 Akt 的激活在 TonEBP 活性、IκBα降解和 p65 核易位中发挥关键作用。TonEBP 既不影响这些事件,也不敏感于 NF-κB 信号。相反,我们揭示了 TonEBP 和 p65 之间的张力依赖性相互作用,并表明 NF-κB 活性在 NF-κB-TonEBP 复合物结合到 NF-κB 反应基因的 κB 元件后大大增强。我们证明了 TonEBP 和 Akt 在肾集合管上皮细胞和巨噬细胞中的关键作用。这些发现揭示了 TonEBP 和 Akt 在高渗性挑战开始时 NF-κB 激活中的新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccf2/2947481/083999c6f977/zmk0191095870001.jpg

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