NM23-H2, an estrogen receptor beta-associated protein, shows diminished expression with progression of

Katey Rayner1, Yong-Xiang Chen, Benjamin Hibbert

  • 1University of Ottawa Heart Institute, Ottawa, ON, Canada.

Insights

We discovered that NM23-H2 protein associates with estrogen receptor beta (ERbeta) in vascular cells. Its expression decreases with atherosclerosis and inflammation, suggesting a role in estrogen

Area of Science:

  • Vascular Biology
  • Endocrinology
  • Molecular Medicine

Background:

  • Estrogen receptor (ER) signaling is crucial for various physiological and pathological processes.
  • The specific role of ER signaling in the vessel wall remains incompletely understood.
  • ERbeta expression is upregulated after arterial injury, highlighting its potential significance.

Purpose of the Study:

  • To identify proteins that associate with ERbeta.
  • To investigate the expression and regulation of NM23-H2 in vascular cells.
  • To explore the potential role of NM23-H2 in estrogen-mediated vascular effects.

Main Methods:

  • Yeast two-hybrid screening to identify ERbeta-interacting proteins.
  • Immunodetection of NM23-H2 in human arterial tissues.
  • In vitro studies using human coronary smooth muscle cells (SMCs).
  • Treatment with 17beta-estradiol, ERbeta-selective, and ERalpha-selective agonists.

Main Results:

  • NM23-H2 was identified as an ERbeta-associated protein.
  • NM23-H2 was detected in arteries with benign intimal hyperplasia but diminished in advanced atherosclerotic lesions.
  • Estrogen treatment, particularly via ERbeta, increased NM23-H2 protein expression and nuclear localization in SMCs.
  • Inflammation decreased NM23-H2 expression, which was restored by estrogen in an ER-dependent manner.

Conclusions:

  • NM23-H2 is a novel ERbeta-associated protein expressed in vascular cells.
  • Estrogen regulates NM23-H2 expression and localization in a receptor-dependent manner.
  • Diminished NM23-H2 in atherosclerosis and inflammation suggests a role in mediating estrogen's vasculoprotective effects.

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