Calcium inhibits renin gene expression by transcriptional and posttranscriptional mechanisms

Jürgen Klar1, Martin Sigl, Birgit Obermayer

  • 1Institut für Physiologie, Universität Regensburg, D-93040 Regensburg, Germany. juergen.klar@vkl.uni-regensburg.de

Insights

Elevated cytosolic calcium inhibits renin gene expression in juxtaglomerular cells by decreasing renin gene transcription and destabilizing renin messenger RNA (mRNA). This calcium effect involves specific promoter regions and dynamin-1.

Area of Science:

  • Nephrology
  • Molecular Biology
  • Cell Biology

Background:

  • Renin is a key enzyme in blood pressure regulation.
  • Juxtaglomerular cells synthesize and secrete renin.
  • Regulation of renin gene expression is crucial for controlling renin levels.

Purpose of the Study:

  • To investigate the role of cytosolic calcium in regulating renin gene expression in juxtaglomerular cells.
  • To elucidate the molecular mechanisms by which calcium influences renin gene expression.

Main Methods:

  • Utilized the immortalized mouse juxtaglomerular cell line As4.1.
  • Administered endoplasmic reticulum Ca-ATPase inhibitors (thapsigargin, cyclopiazonic acid) to increase cytosolic calcium.
  • Employed BAPTA-AM (calcium chelator), protein kinase C inhibitors, and renin promoter-reporter constructs.
  • Performed mRNA half-life analysis and dynamin-1 knockdown studies using small interfering RNA.

Main Results:

  • Increased cytosolic calcium significantly inhibited renin gene expression in a time- and concentration-dependent manner.
  • Calcium-mediated inhibition involved decreased renin gene transcription, localized to the enhancer region with at least three transcription factor-binding sites.
  • Thapsigargin reduced renin mRNA half-life from 10 to 4 hours, with dynamin-1 implicated in mRNA destabilization.

Conclusions:

  • Cytosolic calcium inhibits renin gene expression in juxtaglomerular cells through a dual mechanism.
  • This inhibition involves both suppression of renin gene transcription and accelerated renin mRNA degradation.
  • Dynamin-1 plays a role in the calcium-induced destabilization of renin mRNA.

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