Related Experiment Video
Updated: Jul 17, 2026

An In Vivo Estrogen Deficiency Mouse Model for Screening Exogenous Estrogen Treatments of Cardiovascular Dysfunction After Menopause
Published on: August 13, 2019
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.
Abstract:
While estrogen receptor (ER) profile plays an important role in response to estrogens, receptor coregulators act as critical determinants of signaling. Although the clinical effects of ovarian hormones on various normal and pathological processes are an active area of research, the exact signaling effects on, for example, the vessel wall, are incompletely understood. Hence, we sought to discover proteins that associate with ERbeta, the isoform that shows upregulated mRNA expression after arterial injury. Using a yeast two-hybrid screen we identified NM23-H2, a multifaceted metastasis suppressor candidate protein, as an ERbeta-associated protein. Although NM23-H2 was immunodetected in arteries from young subjects (27 +/- 6 yr, 14 men and 6 women) with benign intimal hyperplasia, expression was diminished in fatty streaks/atheromas and altogether absent in advanced atherosclerotic lesions. Both nm23-H2 mRNA and protein were expressed by vascular cells in vitro. Treatment with 17beta-estradiol and an ERbeta-selective agonist, diarylpropionitrile, increased protein expression of NM23-H2; an effect that was not seen with an ERalpha-selective agonist, propylpyrazole-triol. Estrogen also prompted nuclear localization of NM23-H2 protein in human coronary smooth muscle cells (SMCs). An in vitro mimic of inflammation decreased the expression of NM23-H2 in SMCs, which was restored on addition of estrogen and dependent on the estrogen receptor. In summary, we report the novel association of NM23-H2 with ERbeta and show for the first time its expression in vascular cells and demonstrate regulation of its expression and localization by estrogen. In that the abundance of NM23-H2 diminishes with both the advancement of atherosclerosis and inflammation, this ERbeta-associated protein may play an important role in mediating the vasculoprotective effects of estrogens.
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.
Related Concept Videos
Transducer Mechanism: Nuclear Receptors
About 48 different soluble family members of nuclear receptors are identified that can be divided into two main classes:
Blood Studies for Cardiovascular System II: CRP, Hcy, and Cardiac Natriuretic Peptide Markers
These markers indicate stress or strain on the heart muscle:
Natriuretic Peptides (BNP)
Cardiac myocytes produce these hormones in response to ventricular stretching...