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首页> 外文期刊>American Journal of Physiology >Concurrent binding and modifications of AUF1 and HuR mediate the pH-responsive stabilization of phosphoenolpyruvate carboxykinase mRNA in kidney cells
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Concurrent binding and modifications of AUF1 and HuR mediate the pH-responsive stabilization of phosphoenolpyruvate carboxykinase mRNA in kidney cells

机译:并发结合和修饰AUF1和HuR介导肾细胞中磷酸烯醇丙酮酸羧化激酶mRNA的pH响应稳定化

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Onset of metabolic acidosis leads to a pronounced increase in renal expression of phosphoenolpyruvate carboxykinase (PEPCK). This response, which is mediated in part by stabilization of PEPCK mRNA, is effectively modeled by treating LLC-PKi-F+-9C cells with an acidic medium. siRNA knockdown of HuR prevented the pH-responsive increase in PEPCK mRNA half-life suggesting that HuR is necessary for this response. A recruitment assay, using a reporter mRNA in which the pH response elements of the PEPCK 3'-UTR were replaced with six MS2 stem-loop sequences, was developed to test this hypothesis. The individual recruitment of a chimeric protein containing the MS2 coat protein and either HuR or p40AUFl failed to produce a pH-responsive stabilization. However, the concurrent expression of both chimeric proteins was sufficient to produce a pH-responsive increase in the half-life of the reporter mRNA. siRNA knockdown of AUF1 produced slight increases in basal levels of PEPCK mRNA and protein, but partially inhibited the pH-responsive increases. Complete inhibition of the latter response was achieved by knockdown of both RNA-binding proteins. The results suggest that binding of HuR and AUF1 has opposite effects on basal expression, but may interact to mediate the pH-responsive increase in PEPCK mRNA. Two-dimensional gel electrophoresis indicated that treatment with acidic medium caused a decrease in phosphorylation of HuR, but may increase phosphorylation of the multiple AUF1 isoforms. Thus, the pH-respon-sive stabilization of PEPCK mRNA requires the concurrent binding of HuR and AUF1 and may be mediated by changes in their extent of covalent modification.
机译:代谢性酸中毒的发作导致磷酸烯醇丙酮酸羧激酶(PEPCK)的肾脏表达显着增加。通过用酸性培养基处理LLC-PKi-F + -9C细胞可以有效地模拟部分由PEPCK mRNA稳定介导的反应。敲除HuR的siRNA阻止了PEPCK mRNA半衰期的pH响应性增加,这表明HuR对于这种响应是必需的。开发了一种使用报告基因mRNA的募集试验,其中将PEPCK 3'-UTR的pH响应元件替换为六个MS2茎-环序列,以测试该假设。包含MS2外壳蛋白和HuR或p40AUF1的嵌合蛋白的个体募集不能产生pH响应性稳定作用。但是,两种嵌合蛋白的同时表达足以在报告mRNA的半衰期中产生pH响应性增加。敲低AUF1的siRNA可使PEPCK mRNA和蛋白质的基础水平略有增加,但部分抑制了pH响应性的增加。通过敲低两个RNA结合蛋白可完全抑制后一种反应。结果表明,HuR和AUF1的结合对基础表达具有相反的作用,但可能相互作用以介导PEPCK mRNA的pH响应性增加。二维凝胶电泳表明,用酸性介质处理会导致HuR磷酸化程度降低,但可能会增加多个AUF1同工型的磷酸化程度。因此,PEPCK mRNA的pH响应稳定需要同时结合HuR和AUF1,并可能通过其共价修饰程度的变化来介导。

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