Tanimoto Keiji, Sugiura Akiko, Kanafusa Sumiyo, Saito Tomoko, Masui Naoto, Yanai Kazuyuki, Fukamizu Akiyoshi
Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
J Clin Invest. 2008 Mar;118(3):1006-16. doi: 10.1172/JCI33824.
Renin, a major regulatory component of the renin-angiotensin system, plays a pivotal role in regulating blood pressure and electrolyte homeostasis and is predominantly expressed in the kidney. Several cAMP-responsive elements have been identified within renin gene promoters. Here, we study how 2 such elements, renin proximal promoter element-2 (RP-2) and overlapping cAMP and negative regulatory elements (CNRE), affect the transcriptional regulation of renin. We generated Tg mice (TgM) bearing BACs containing either WT or mutant RP-2 or CNRE, integrated at single chromosomal loci. Analysis of the TgM revealed that RP-2 was essential to basal promoter activity in the kidney, while renin mRNA levels did not significantly change in any tissues tested in the CNRE mutant TgM. To evaluate the physiological significance of these mutations, we used the BAC Tg to rescue hypotensive Renin-null mutant mice. As predicted, no renin expression was observed in the kidneys of RP-2 mutant/Renin-null compound mice, whereas renin expression in CNRE mutant compound mice was indistinguishable from that in control mice. Consistent with this, RP-2 mutant animals were hypotensive, while CNRE mutants had normal blood pressure. Thus, transcriptional regulation of renin expression via RP-2 but not CNRE is critical for blood pressure regulation by this gene.
肾素是肾素-血管紧张素系统的主要调节成分,在调节血压和电解质平衡中起关键作用,主要在肾脏中表达。在肾素基因启动子内已鉴定出几个cAMP反应元件。在此,我们研究肾素近端启动子元件-2(RP-2)和重叠的cAMP与负调控元件(CNRE)这两个元件如何影响肾素的转录调控。我们构建了携带含有野生型或突变型RP-2或CNRE的BACs的转基因小鼠(TgM),这些BACs整合在单个染色体位点。对TgM的分析表明,RP-2对肾脏中的基础启动子活性至关重要,而在CNRE突变型TgM的任何测试组织中,肾素mRNA水平均未显著变化。为了评估这些突变的生理意义,我们使用BAC转基因来挽救低血压的肾素基因敲除突变小鼠。正如预期的那样,在RP-2突变体/肾素基因敲除复合小鼠的肾脏中未观察到肾素表达,而CNRE突变复合小鼠中的肾素表达与对照小鼠中的无明显差异。与此一致的是,RP-2突变动物血压降低,而CNRE突变体血压正常。因此,通过RP-2而非CNRE对肾素表达的转录调控对于该基因调节血压至关重要。