Saifur Rohman Mohammad, Emoto Noriaki, Nonaka Hidemi, Okura Ryusuke, Nishimura Masataka, Yagita Kazuhiro, van der Horst Gijsbertus T J, Matsuo Masafumi, Okamura Hitoshi, Yokoyama Mitsuhiro
Division of Cardiovascular and Respiratory Medicine, Department of Internal Medicine, Kobe University Graduate School, Kobe, Japan.
Kidney Int. 2005 Apr;67(4):1410-9. doi: 10.1111/j.1523-1755.2005.00218.x.
Daily rhythms in mammalian physiology are generated by a transcription/translation feedback loop orchestrated by a set of clock genes. However, little is known about the molecular cascade from the clock gene oscillators to cellular function.
The mRNA expression profiles of NHE3 and clock genes were examined in mice and rat kidneys. First, luciferase assays followed by a site directed mutagenesis of an E-box sequence were used to assess the CLOCK:BMAL1-transactivated NHE3 promoter activity. A direct binding of CLOCK:BMAL1 heterodimers to an E-box sequences of NHE3 promoter was confirmed by electrophoretic mobility shift assay (EMSA).
We present evidence that renal tubular NHE3, the Na(+)/H(+) exchanger critical for systemic electrolyte and acid-base homeostasis, is a clock-controlled gene regulated directly by CLOCK:BMAL1 heterodimers in kidneys. NHE3 mRNA level in rat kidney displayed circadian kinetics, and this circadian expression was severely blunted in homozygous CRY1/2 double-deficient mice, suggesting that the transcriptional machinery of peripheral clocks in renal tubular cells directly regulates the circadian expression of NHE3. By analyzing the 5' upstream region of the NHE3 gene, we found an E box critical for the transcription of NHE3 via the CLOCK:BMAL1-driven circadian oscillator. The circadian expression of NHE3 mRNA was reflected by oscillating protein levels in the proximal tubules of the rat kidney.
NHE3 should represent an output gene of the peripheral oscillators in kidney, which is regulated directly by CLOCK:BMAL1 heterodimers.
哺乳动物生理学中的日常节律是由一组时钟基因精心编排的转录/翻译反馈环产生的。然而,从时钟基因振荡器到细胞功能的分子级联反应却鲜为人知。
检测了小鼠和大鼠肾脏中NHE3和时钟基因的mRNA表达谱。首先,采用荧光素酶报告基因检测,随后对E-box序列进行定点诱变,以评估CLOCK:BMAL1反式激活的NHE3启动子活性。通过电泳迁移率变动分析(EMSA)证实了CLOCK:BMAL1异二聚体与NHE3启动子的E-box序列直接结合。
我们提供的证据表明,肾小管NHE3是对全身电解质和酸碱平衡至关重要的Na(+)/H(+)交换体,是肾脏中由CLOCK:BMAL1异二聚体直接调控的时钟控制基因。大鼠肾脏中NHE3 mRNA水平呈现昼夜节律动力学,并且这种昼夜节律表达在纯合CRY1/2双缺陷小鼠中严重减弱,这表明肾小管细胞中外周时钟的转录机制直接调节NHE3的昼夜节律表达。通过分析NHE3基因的5'上游区域,我们发现了一个对通过CLOCK:BMAL1驱动的昼夜振荡器转录NHE3至关重要的E盒。大鼠肾脏近端小管中振荡的蛋白质水平反映了NHE3 mRNA的昼夜节律表达。
NHE3应该代表肾脏中外周振荡器的一个输出基因,它由CLOCK:BMAL1异二聚体直接调控。