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Published on: May 19, 2021
Response Gene to Complement 32 Maintains Blood Pressure Homeostasis by Regulating α-Adrenergic Receptor Expression
Jun-Ming Tang1,2,3, Ning Shi1, Kun Dong1
1From the Department of Physiology and Pharmacology (J.-M.T., N.S., K.D., S.A.B., M.A.B., S.-Y.C.), University of Georgia, Athens.
Insights
Response gene to complement 32 (RGC-32) deficiency causes hypertension in mice by increasing vascular tone and altering sympathetic activity. Downregulation of RGC-32 is linked to low birth weight-related hypertension in humans.
Area of Science:
- Cardiovascular Physiology
- Molecular Biology
- Developmental Biology
Background:
- Hypertension is more prevalent in individuals with low birth weight and rapid postnatal weight gain.
- The molecular mechanisms linking low birth weight to hypertension are not well understood.
- RGC-32 deficient mice exhibit reduced birth weight but accelerated postnatal growth.
Purpose of the Study:
- To investigate if RGC-32 deficient mice develop hypertension.
- To elucidate the molecular mechanisms underlying this hypertension.
- To explore the role of RGC-32 in blood pressure regulation.
Main Methods:
- Radiotelemetry system to measure blood pressure in RGC-32 deficient (RGC-32-/-) and wild-type (WT) mice.
- Assessment of vascular tone and arterial distensibility.
- Analysis of sympathetic and parasympathetic activity.
- Investigation of angiotensin II type I receptor (AT1R) and α1-adrenergic receptor (α1-AdR) expression.
- Study of RGC-32 interaction with Sp1 transcription factor.
Main Results:
- RGC-32-/- mice exhibited significantly higher mean arterial pressure compared to WT mice.
- Increased blood pressure was associated with enhanced vascular tone and reduced arterial distensibility.
- Elevated vascular tone resulted from increased sympathetic versus parasympathetic activity.
- Increased expression of AT1R and α1-AdR in arterial smooth muscles was observed.
- RGC-32 was found to regulate AT1R gene transcription by inhibiting Sp1 binding to the AT1R promoter.
Conclusions:
- RGC-32 plays a critical role in maintaining blood pressure homeostasis.
- RGC-32 deficiency leads to hypertension, particularly in the context of low birth weight.
- Downregulation of RGC-32 in arterial smooth muscle is associated with human hypertension in low birth weight individuals.
Rationale:
Hypertension prevalence is much higher among children and adolescents with low birth weight and greater postnatal weight gain than in individuals with normal birth weight. However, the cause and molecular mechanisms underlying this complication remain largely unknown. Our previous studies have shown that RGC-32 (response gene to complement 32)-deficient (RGC-32-/-) mice are born significantly smaller but grow faster than their WT (wild type) controls, which allows adult RGC-32-/- mice to attain body weights similar to those of control mice.
Objective:
The objective of this study is to determine whether RGC-32-/- mice develop hypertension, and if so, to elucidate the underlying mechanisms.
Methods And Results:
By using a radiotelemetry system, we found that RGC-32-/- mice exhibit higher mean arterial pressure than WT mice (101±4 versus 119±5 mm Hg), which enabled us to use RGC-32-/- mice to study the mechanisms underlying low birth weight-related hypertension. The increased blood pressure in RGC-32-/- mice was associated with increased vascular tone and decreased distensibility of small resistance arteries. The increased vascular tone was because of an increase in the relative contribution of sympathetic versus parasympathetic activity and was linked to increased expression of AT1R (angiotensin II type I receptor) and α1-AdR (α1-adrenergic receptor) in arterial smooth muscles. Mechanistically, RGC-32 regulated AT1R gene transcription by interacting with Sp1 (specificity protein 1) transcription factor and further blocking its binding to the AT1R promoter, leading to suppression of AT1R expression. The attenuation of AT1R leads to reduction in α1-AdR expression, which was critical for the balance of sympathetic versus parasympathetic control of vascular tone. Of importance, downregulation of RGC-32 in arterial smooth muscles was also associated with low birth weight and hypertension in humans.
Conclusions:
Our results indicate that RGC-32 is a novel protein factor vital for maintaining blood pressure homeostasis, especially in individuals with low birth weight.
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