首页> 美国卫生研究院文献>Biochemical Journal >Regulation of expression of the stress response gene Osp94: identification of the tonicity response element and intracellular signalling pathways.
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Regulation of expression of the stress response gene Osp94: identification of the tonicity response element and intracellular signalling pathways.

机译:调节应激反应基因Osp94的表达:调节张力反应元件和细胞内信号传导途径。

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摘要

Osp94 (osmotic stress protein of 94 kDa) is known to be up-regulated by hypertonic and heat-shock stresses in mouse renal inner medullary collecting duct (mIMCD3) cells. To investigate the molecular mechanism of transcriptional regulation of the Osp94 gene under these stresses, we cloned and characterized the 5'-flanking region of the gene. Sequence analysis of the proximal 4 kb 5'-flanking region revealed a TATA-less G/C-rich promoter region containing a cluster of Sp1 sites. We also identified upstream sequence motifs similar to the consensus TonE/ORE (tonicity-response element/osmotic response element) as well as the consensus HSE (heat-shock element). Luciferase activities in cells transfected with reporter constructs containing a TonE/ORE-like element (Osp94-TonE; 5'-TGGAAAGGACCAG-3') and HSE enhanced reporter gene expression under hypertonic stress and heat-shock stress respectively. Electrophoretic gel mobility-shift assay showed a slowly migrating band binding to the Osp94-TonE probe, probably representing binding of TonEBP (TonE binding protein) to this enhancer element. Furthermore, treatment of mIMCD3 cells with MAPK (mitogen-activated protein kinase) inhibitors (SB203580, PD98059, U0126 and SP600125) and a proteasome inhibitor (MG132) suppressed the increase in Osp94 gene expression caused by hypertonic NaCl. These results indicate that the 5'-flanking region of Osp94 gene contains a hypertonicity sensitive cis -acting element, Osp94-TonE, which is distinct from a functional HSE. Furthermore, the MAPK and proteasome systems appear to be, at least in part, involved in hypertonic-stressmediated regulation of Osp94 through Osp94-TonE.
机译:已知Osp94(94 kDa的渗透压蛋白)在小鼠肾脏内髓样集管(mIMCD3)细胞中由高渗和热休克应力上调。为了研究在这些压力下Osp94基因转录调控的分子机制,我们克隆并鉴定了该基因的5'侧翼区域。对近端4 kb 5'侧翼区域的序列分析显示,富含TATA的富含G / C的启动子区域包含一个Sp1位点簇。我们还确定了类似于共有的TonE / ORE(张力反应元件/渗透反应元件)以及共有的HSE(热休克元件)的上游序列基序。转染了含有TonE / ORE样元件(Osp94-TonE; 5'-TGGAAAGGACCAG-3')和HSE的报告基因构建体转染的细胞中的萤光素酶活性分别在高渗应激和热激胁迫下增强了报道基因的表达。电泳迁移率迁移分析表明,一条缓慢迁移的条带与Osp94-TonE探针结合,可能代表TonEBP(TonE结合蛋白)与该增强子的结合。此外,用MAPK(促分裂原活化蛋白激酶)抑制剂(SB203580,PD98059,U0126和SP600125)和蛋白酶体抑制剂(MG132)处理mIMCD3细胞可抑制高渗NaCl引起的Osp94基因表达的增加。这些结果表明,Osp94基因的5'侧翼区域含有高渗敏感性顺式作用元件Osp94-TonE,其不同于功能性HSE。此外,MAPK和蛋白酶体系统似乎至少部分参与通过Osp94-TonE的高渗应激介导的Osp94调控。

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