Melanocortin MC4R receptor is required for energy expenditure but not blood pressure effects of angiotensin II within the mouse brain

Author:

Oliveira Vanessa1,Riedl Ruth A.2,Claflin Kristin E.3,Mathieu Natalia M.1ORCID,Ritter McKenzie L.1,Balapattabi Kirthikaa1ORCID,Wackman Kelsey K.1,Reho John J.14,Brozoski Daniel T.1,Morgan Donald A.3,Cui Huxing35ORCID,Rahmouni Kamal35678ORCID,Burnett Colin M. L.6,Nakagawa Pablo19,Sigmund Curt D.1910ORCID,Morselli Lisa L.11,Grobe Justin L.1491012ORCID

Affiliation:

1. Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin

2. Department of Pediatrics, Baylor College of Medicine, Houston, Texas

3. Department of Neuroscience and Pharmacology, University of Iowa, Iowa City, Iowa

4. Comprehensive Rodent Metabolic Phenotyping Core, Medical College of Wisconsin, Milwaukee, Wisconsin

5. Obesity Research and Education Initiative, University of Iowa, Iowa City, Iowa

6. Department of Internal Medicine, University of Iowa, Iowa City, Iowa

7. Fraternal Order of Eagles Diabetes Research Center, University of Iowa, Iowa City, Iowa

8. Iowa City Veterans Affairs Health Care System, Iowa City, Iowa

9. Cardiovascular Center, Medical College of Wisconsin, Milwaukee, Wisconsin

10. Neuroscience Research Center, Medical College of Wisconsin, Milwaukee, Wisconsin

11. Department of Medicine, Medical College of Wisconsin, Milwaukee, Wisconsin

12. Department of Biomedical Engineering, Medical College of Wisconsin, Milwaukee, Wisconsin

Abstract

The brain renin-angiotensin system (RAS) is implicated in control of blood pressure (BP), fluid intake, and energy expenditure (EE). Angiotensin II (ANG II) within the arcuate nucleus of the hypothalamus contributes to control of resting metabolic rate (RMR) and thereby EE through its actions on Agouti-related peptide (AgRP) neurons, which also contribute to EE control by leptin. First, we determined that although leptin stimulates EE in control littermates, mice with transgenic activation of the brain RAS (sRA) exhibit increased EE and leptin has no additive effect to exaggerate EE in these mice. These findings led us to hypothesize that leptin and ANG II in the brain stimulate EE through a shared mechanism. Because AgRP signaling to the melanocortin MC4R receptor contributes to the metabolic effects of leptin, we performed a series of studies examining RMR, fluid intake, and BP responses to ANG II in mice rendered deficient for expression of MC4R via a transcriptional block ( Mc4r-TB). These mice were resistant to stimulation of RMR in response to activation of the endogenous brain RAS via chronic deoxycorticosterone acetate (DOCA)-salt treatment, whereas fluid and electrolyte effects remained intact. These mice were also resistant to stimulation of RMR via acute intracerebroventricular (ICV) injection of ANG II, whereas BP responses to ICV ANG II remained intact. Collectively, these data demonstrate that the effects of ANG II within the brain to control RMR and EE are dependent on MC4R signaling, whereas fluid homeostasis and BP responses are independent of MC4R signaling.

Funder

American Heart Association

HHS | NIH | National Heart, Lung, and Blood Institute

HHS | NIH | National Center for Advancing Translational Sciences

Advancing a Healthier Wisconsin, Medical College of Wisconsin

Publisher

American Physiological Society

Subject

Genetics,Physiology

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