Exploration of cardiometabolic and developmental significance of angiotensinogen expression by cells expressing the leptin receptor or agouti-related peptide

Author:

Sapouckey Sarah A.1,Morselli Lisa L.2,Deng Guorui1,Patil Chetan N.3,Balapattabi Kirthikaa3ORCID,Oliveira Vanessa3,Claflin Kristin E.1,Gomez Javier3,Pearson Nicole A.1,Potthoff Matthew J.145,Gibson-Corley Katherine N.56,Sigmund Curt D.378ORCID,Grobe Justin L.378910ORCID

Affiliation:

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

2. Division of Endocrinology, Department of Internal Medicine, University of Iowa, Iowa City, Iowa

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

4. Obesity Research & Education Initiative, University of Iowa, Iowa City, Iowa

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

6. Department of Pathology, University of Iowa, Iowa City, Iowa

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

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

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

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

Abstract

Angiotensin II (ANG II) Agtr1a receptor (AT1A) is expressed in cells of the arcuate nucleus of the hypothalamus that express the leptin receptor ( Lepr) and agouti-related peptide ( Agrp). Agtr1a expression in these cells is required to stimulate resting energy expenditure in response to leptin and high-fat diets (HFDs), but the mechanism activating AT1Asignaling by leptin remains unclear. To probe the role of local paracrine/autocrine ANG II generation and signaling in this mechanism, we bred mice harboring a conditional allele for angiotensinogen ( Agt, encoding AGT) with mice expressing Cre-recombinase via the Lepr or Agrp promoters to cause cell-specific deletions of Agt ( AgtLepr-KOand AgtAgrp-KOmice, respectively). AgtLepr-KOmice were phenotypically normal, arguing against a paracrine/autocrine AGT signaling mechanism for metabolic control. In contrast, AgtAgrp-KOmice exhibited reduced preweaning survival, and surviving adults exhibited altered renal structure and steroid flux, paralleling previous reports of animals with whole body Agt deficiency or Agt disruption in albumin ( Alb)-expressing cells (thought to cause liver-specific disruption). Surprisingly, adult AgtAgrp-KOmice exhibited normal circulating AGT protein and hepatic Agt mRNA expression but reduced Agt mRNA expression in adrenal glands. Reanalysis of RNA-sequencing data sets describing transcriptomes of normal adrenal glands suggests that Agrp and Alb are both expressed in this tissue, and fluorescent reporter gene expression confirms Cre activity in adrenal gland of both Agrp-Cre and Alb-Cre mice. These findings lead to the iconoclastic conclusion that extrahepatic (i.e., adrenal) expression of Agt is critically required for normal renal development and survival.

Funder

American Heart Association

Office of Extramural Research, National Institutes of Health

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

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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