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首页> 外文期刊>Molecular biology of the cell >High NaCl–induced activation of CDK5 increases phosphorylation of the osmoprotective transcription factor TonEBP/OREBP at threonine 135, which contributes to its rapid nuclear localization
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High NaCl–induced activation of CDK5 increases phosphorylation of the osmoprotective transcription factor TonEBP/OREBP at threonine 135, which contributes to its rapid nuclear localization

机译:高NaCl诱导的CDK5激活增加了苏氨酸135上的渗透保护性转录因子TonEBP / OREBP的磷酸化,这有助于其快速核定位。

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摘要

When activated by high NaCl, tonicity-responsive enhancer–binding protein/osmotic response element–binding protein (TonEBP/OREBP) increases transcription of osmoprotective genes. High NaCl activates TonEBP/OREBP by increasing its phosphorylation, nuclear localization, and transactivating activity. In HEK293 cells, mass spectrometry shows phosphorylation of TonEBP/OREBP-S120, -S134, -T135, and -S155. When those residues are individually mutated to alanine, nuclear localization is greater for S155A, less for S134A and T135A, and unchanged for S120A. High osmolality increases phosphorylation at T135 in HEK293 cells and in rat renal inner medullas in vivo. In HEK293 cells, high NaCl activates cyclin-dependent kinase 5 (CDK5), which directly phosphorylates TonEBP/OREBP-T135. Inhibition of CDK5 activity reduces the rapid high NaCl–induced nuclear localization of TonEBP/OREBP but does not affect its transactivating activity. High NaCl induces nuclear localization of TonEBP/OREBP faster (≤2 h) than it increases its overall protein abundance (≥6 h). Inhibition of CDK5 reduces the increase in TonEBP/OREBP transcriptional activity that has occurred by 4 h after NaCl is raised, associated with less nuclear TonEBP/OREBP at that time, but does not reduce either activity or nuclear TonEBP/OREBP after 16 h. Thus high NaCl–induced increase of the overall abundance of TonEBP/OREBP, by itself, eventually raises its effective level in the nucleus, but its rapid CDK5-dependent nuclear localization accelerates the process, speeding transcription of osmoprotective target genes.
机译:当被高NaCl激活时,张力反应增强剂结合蛋白/渗透反应元件结合蛋白(TonEBP / OREBP)会增加渗透保护基因的转录。高NaCl通过增加TonEBP / OREBP的磷酸化,核定位和反式激活活性来激活它。在HEK293细胞中,质谱显示TonEBP / OREBP-S120,-S134,-T135和-S155的磷酸化。当这些残基单独突变为丙氨酸时,S155A的核定位较大,S134A和T135A的核定位较小,而S120A的核定位不变。高渗透压增加体内HEK293细胞和大鼠肾内侧髓质中T135处的磷酸化。在HEK293细胞中,高NaCl激活细胞周期蛋白依赖性激酶5(CDK5),该激酶直接磷酸化TonEBP / OREBP-T135。抑制CDK5活性可降低NaCl诱导的TonEBP / OREBP的快速高核定位,但不影响其反式激活活性。高NaCl诱导TonEBP / OREBP的核定位更快(≤2 h),而不是增加其总蛋白丰度(≥6 h)。抑制CDK5降低了NaCl升高4小时后已发生的TonEBP / OREBP转录活性的增加,这与当时的核TonEBP / OREBP较少有关,但在16 h后并未降低其活性或核TonEBP / OREBP。因此,高NaCl诱导的TonEBP / OREBP总体丰度的增加最终提高了其在细胞核中的有效水平,但其快速的CDK5依赖性核定位加快了该过程,并加速了渗透保护性靶基因的转录。

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