1. Academic Validation
  2. Dec1 and CLOCK Regulate Na+/K+-ATPase β1 Subunit Expression and Blood Pressure

Dec1 and CLOCK Regulate Na+/K+-ATPase β1 Subunit Expression and Blood Pressure

  • Hypertension. 2018 Sep;72(3):746-754. doi: 10.1161/HYPERTENSIONAHA.118.11075.
Ayumu Nakashima 1 2 3 Takeshi Kawamoto 4 Mitsuhide Noshiro 4 Toshinori Ueno 3 Shigehiro Doi 3 Kiyomasa Honda 4 Tatsuya Maruhashi 5 Kensuke Noma 1 6 Sato Honma 7 Takao Masaki 3 Yukihito Higashi 1 6 Yukio Kato 4
Affiliations

Affiliations

  • 1 From the Department of Cardiovascular Regeneration and Medicine, Research Institute for Radiation Biology and Medicine (A.N., K.N., Y.H.).
  • 2 Department of Stem Cell Biology and Medicine (A.N.).
  • 3 Department of Nephrology (A.N., T.U., S.D., T. Masaki).
  • 4 Department of Dental and Medical Biochemistry (T.K., M.N., K.H., Y.K.).
  • 5 Department of Cardiovascular Medicine (T. Maruhashi), Graduate School of Biomedical & Health Sciences, Hiroshima University, Japan.
  • 6 Division of Regeneration and Medicine, Medical Center for Translational and Clinical Research (K.N., Y.H.), Hiroshima University Hospital, Japan.
  • 7 Department of Chronomedicine, Hokkaido University Graduate School of Medicine, Sapporo, Japan (S.H.).
Abstract

Blood pressure shows a circadian rhythm, and recent studies have suggested the involvement of a molecular clock system in its control. In the clock system, the CLOCK (circadian locomotor output cycles kaput):BMAL1 (brain and muscle Aryl Hydrocarbon Receptor nuclear translocator-like protein-1) heterodimer enhances promoter activity of clock genes, and DEC1 (BHLHE40/STRA13/SHARP-2) represses CLOCK/BMAL1-enhanced promoter activity through competition for binding to the clock element, CACGTG E-box. However, the molecular mechanisms by which this system regulates blood pressure remain unclear. Here, we show that DEC1 suppressed the expression of ATP1B1, which encodes the β1 subunit of the Na+/K+-ATPase and elevated blood pressure. Using chromatin immunoprecipitation and chromatin immunoprecipitation-on-chip analyses, we found that DEC1 and CLOCK bound to E-boxes in the ATP1B1 promoter. Luciferase assays revealed that CLOCK:BMAL1 heterodimer enhanced transcription from the ATP1B1 promoter, whereas DEC1 suppressed this transactivation. Accordingly, Atp1b1 mRNA and protein levels in mouse kidney, aorta, and heart showed a circadian rhythm that was antiphasic to the blood pressure rhythm. Furthermore, Dec1-deficient mice showed enhanced Atp1b1 expression in these tissues and reduced blood pressure. In contrast, Clock-mutant mice showed reduced Atp1b1 expression and elevated blood pressure. Our results raise the possibility that transcriptional regulation of Atp1b1 by DEC1 and CLOCK:BMAL1 contributes to blood pressure.

Keywords

aorta; blood pressure; chromatin immunoprecipitation; circadian rhythm; suprachiasmatic nucleus.

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