International Journal of Molecular Sciences (Sep 2021)

Intermittent Hypoxia Upregulates the <i>Renin</i> and <i>Cd38</i> mRNAs in Renin-Producing Cells via the Downregulation of miR-203

  • Yoshinori Takeda,
  • Asako Itaya-Hironaka,
  • Akiyo Yamauchi,
  • Mai Makino,
  • Sumiyo Sakuramoto-Tsuchida,
  • Hiroyo Ota,
  • Ryuji Kawaguchi,
  • Shin Takasawa

DOI
https://doi.org/10.3390/ijms221810127
Journal volume & issue
Vol. 22, no. 18
p. 10127

Abstract

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Sleep apnea syndrome is characterized by recurrent episodes of oxygen desaturation and reoxygenation (intermittent hypoxia [IH]), and it is a known risk factor for hypertension. The upregulation of the renin-angiotensin system has been reported in IH, and the correlation between renin and CD38 has been noted. We exposed human HEK293 and mouse As4.1 renal cells to experimental IH or normoxia for 24 h and then measured the mRNA levels using a real-time reverse transcription polymerase chain reaction. The mRNA levels of Renin (Ren) and Cd38 were significantly increased by IH, indicating that they could be involved in the CD38-cyclic ADP-ribose signaling pathway. We next investigated the promotor activities of both genes, which were not increased by IH. Yet, a target mRNA search of the microRNA (miRNA) revealed both mRNAs to have a potential target sequence for miR-203. The miR-203 level of the IH-treated cells was significantly decreased when compared with the normoxia-treated cells. The IH-induced upregulation of the genes was abolished by the introduction of the miR-203 mimic, but not the miR-203 mimic NC negative control. These results indicate that IH stress downregulates the miR-203 in renin-producing cells, thereby resulting in increased mRNA levels of Ren and Cd38, which leads to hypertension.

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