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Altered expression of the natriuretic peptide system in genetically modified heme oxygenase-1 mice treated with high
David W J Armstrong1, M Yat Tse, Luis G Melo
1Department of Anatomy and Cell Biology, Queen's University, Room 850 Botterell Hall, Kingston, ON, K7L 3N6, Canada.
Insights
Heme oxygenase-1 (HO-1) influences cardiovascular health by modulating the natriuretic peptide system (NPS). Reduced HO-1 impairs NPS, while increased HO-1 enhances it, impacting salt sensitivity and cardiac function.
Area of Science:
- Cardiovascular Physiology
- Molecular Biology
- Endocrinology
Background:
- Heme oxygenase-1 (HO-1) is a cytoprotective enzyme with known cardioprotective effects in hypertension and cardiac hypertrophy.
- The precise mechanisms underlying HO-1's cardioprotective role, particularly its interaction with the natriuretic peptide system (NPS), remain unclear.
- The NPS is crucial for cardiovascular homeostasis and tissue regulation.
Purpose of the Study:
- To investigate the effect of high dietary salt on the natriuretic peptide system (NPS) in genetic models of heme oxygenase-1 (HO-1) expression.
- To determine if altered HO-1 expression impacts NPS levels in the left ventricle (LV).
- To elucidate the role of NPS modulation in the cardioprotective effects of HO-1.
Main Methods:
- Male HO-1 knockout (HO-1(-/-)) and HO-1 overexpressing (HO-1(Tg)) mice were fed normal salt (NS) or high salt (HS) diets for 5 weeks.
- Left ventricle (LV) mRNA expression of NPS components was analyzed using quantitative real-time PCR.
- Atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) peptide levels were measured via radioimmunoassay; LV cyclic guanosine monophosphate (cGMP) was measured via enzyme immunoassay.
Main Results:
- HO-1(-/-) mice on HS diet exhibited increased LV/BW ratio, reduced NPS mRNA and peptide expression, and no salt-induced ANP increase.
- HO-1(Tg) mice showed significantly higher ANP and BNP expression, with no adverse effect on LV/BW ratio under HS diet.
- HO-1 ablation led to lower NPS mRNA expression, while HO-1 overexpression increased it, confirmed by peptide levels.
Conclusions:
- Altered expression of the natriuretic peptide system (NPS) is a key mechanism through which heme oxygenase-1 (HO-1) exerts its effects on cardiovascular homeostasis.
- Reduced HO-1 expression detrimentally affects NPS, potentially contributing to salt sensitivity and adverse cardiac remodeling.
- Enhanced HO-1 expression positively influences NPS, suggesting a protective role against high salt challenges.
Abstract:
Heme oxygenase-1 (HO-1) has been well established as a cytoprotective molecule, and has been shown to exert cardioprotective effects in both hypertension and cardiac hypertrophy. However, the precise mechanism of the cardioprotective effect of HO-1 has yet to be fully elucidated. With the natriuretic peptide system (NPS) as a key player in cardiovascular homeostasis and tissue dynamics, we sought to examine the effect of high dietary salt treatment in genetic models of HO-1 expression, and assessed the expression of the NPS in the left ventricle (LV), to determine if the effects of altered HO-1 expression may be due to modified levels of the NPS. Age-matched 12-week old male HO-1 knockout (HO-1(-/-)) and HO-1 cardiomyocyte-specific transgenic overexpressing (HO-1(Tg)) mice were treated with either normal salt (NS; 0.8%) or high salt (HS; 8.0%) chow for 5 weeks. LV mRNA expression was determined using quantitative real-time PCR. ANP peptide level was measured in the LV and plasma using radioimmunoassay, and LV cyclic 3'-5' guanosine monophosphate level was measured using an enzyme immunoassay kit. HO-1(-/-) fed HS diet had significantly higher left ventricle-to-body weight ratio (LV/BW) compared to HO-1(+/+) mice fed NS diet. HO-1(-/-) mice had significantly reduced expression of the NPS compared to controls, and these mice did not exhibit a salt-induced increase in ANP expression. HS treatment had no noticeable effect on LV/BW in HO-1(Tg) mice compared to controls. HO-1(Tg) mice had significantly higher ANP and BNP expression compared to controls. There were no differences in LV cGMP levels among all genotypes and dietary treatments. HO-1 ablation resulted in significantly lower mRNA expression of the NPS, whereas HO-1 overexpression resulted in higher mRNA expression of the NPS. Both were substantiated by peptide levels as measured by RIA. These data indicate that the detrimental effect of reduced HO-1 expression and the cardioprotective effect of increased HO-1 expression may be due, in part, to altered expression of the NPS.
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