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HADHB、HuR和CP1与人类肾素mRNA的3'端非翻译区远端结合,并对肾素表达进行差异调节。

HADHB, HuR, and CP1 bind to the distal 3'-untranslated region of human renin mRNA and differentially modulate renin expression.

作者信息

Adams David J, Beveridge Dianne J, van der Weyden Louise, Mangs Helena, Leedman Peter J, Morris Brian J

机构信息

Basic & Clinical Genomics Laboratory, School of Medical Sciences and Institute for Biomedical Research, The University of Sydney, New South Wales 2006, Australia.

出版信息

J Biol Chem. 2003 Nov 7;278(45):44894-903. doi: 10.1074/jbc.M307782200. Epub 2003 Aug 21.

Abstract

Production of renin is critically dependent on modulation of REN mRNA stability. Here we sought to elucidate the molecular mechanisms involved. Transfections of renin-expressing Calu-6 cells with reporter constructs showed that a cis-acting 34-nucleotide AU-rich "renin stability regulatory element" in the REN 3'-untranslated region (3'-UTR) contributes to basal REN mRNA instability. Yeast three-hybrid screening with the REN 3'-UTR as bait isolated HADHB (hydroxyacyl-CoA dehydrogenase/3-ketoacyl-CoA thiolase/enoyl-CoA hydratase (trifunctional protein) beta-subunit) as a novel REN mRNA-binding protein. Recombinant HADHB bound specifically to the 3'-UTR of REN mRNA, as did the known mRNA stabilizers HuR and CP1 (poly(C)-binding protein-1). This required the renin stability regulatory element. Forskolin, which augments REN mRNA stability in Calu-6 cells, increased binding of several proteins, including HuR and CP1, to the REN 3'-UTR, whereas 4-bromocrotonic acid, a specific thiolase inhibitor, decreased binding and elevated renin protein levels. Upon decreasing HADHB mRNA with RNA interference, renin protein and mRNA stability increased, whereas RNA interference against HuR caused these to decrease. Immunoprecipitation and reverse transcription-PCR of Calu-6 extracts confirmed that HADHB, HuR, and CP1 each associate with REN mRNA in vivo. Intracellular imaging revealed distinct localization of HADHB to mitochondria, HuR to nuclei, and CP1 throughout the cell. Immunohistochemistry demonstrated enrichment of HADHB in renin-producing renal juxtaglomerular cells. In conclusion, HADHB, HuR, and CP1 are novel REN mRNA-binding proteins that target a cis-element in the 3'-UTR of REN mRNA and regulate renin production. cAMP-mediated increased REN mRNA stability may involve stimulation of HuR and CP1, whereas REN mRNA decay may involve thiolase-dependent pathways.

摘要

肾素的产生严重依赖于REN mRNA稳定性的调节。在此,我们试图阐明其中涉及的分子机制。用报告基因构建体转染表达肾素的Calu-6细胞表明,REN 3'-非翻译区(3'-UTR)中一个顺式作用的34个核苷酸富含AU的“肾素稳定性调节元件”导致基础REN mRNA不稳定。以REN 3'-UTR为诱饵进行酵母三杂交筛选,分离出HADHB(羟酰基辅酶A脱氢酶/3-酮酰基辅酶A硫解酶/烯酰基辅酶A水合酶(三功能蛋白)β亚基)作为一种新型的REN mRNA结合蛋白。重组HADHB特异性结合REN mRNA的3'-UTR,已知的mRNA稳定剂HuR和CP1也是如此。这需要肾素稳定性调节元件。在Calu-6细胞中增强REN mRNA稳定性的福斯高林增加了包括HuR和CP1在内的几种蛋白质与REN 3'-UTR的结合,而特异性硫解酶抑制剂4-溴巴豆酸则减少了结合并提高了肾素蛋白水平。用RNA干扰降低HADHB mRNA后,肾素蛋白和mRNA稳定性增加,而针对HuR的RNA干扰则导致这些指标下降。对Calu-6提取物进行免疫沉淀和逆转录PCR证实,HADHB、HuR和CP1在体内均与REN mRNA相关联。细胞内成像显示HADHB定位于线粒体,HuR定位于细胞核,CP1遍布整个细胞。免疫组织化学显示HADHB在产生肾素的肾近球细胞中富集。总之,HADHB、HuR和CP1是新型的REN mRNA结合蛋白,它们靶向REN mRNA 3'-UTR中的一个顺式元件并调节肾素的产生。cAMP介导的REN mRNA稳定性增加可能涉及对HuR和CP1的刺激,而REN mRNA降解可能涉及硫解酶依赖性途径。

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