Pre– and Post–Sexual Maturity Liver-specific ERα Knockout Does Not Impact Hepatic Mitochondrial Function

Author:

Fuller Kelly N Z12,Allen Julie12,Kumari Roshan12,Akakpo Jephte Y3,Ruebel Meghan4,Shankar Kartik4ORCID,Thyfault John P12567ORCID

Affiliation:

1. Department of Cell Biology and Physiology, University of Kansas Medical Center , Kansas City, KS 66160 , USA

2. Research Service, Kansas City Veterans Affairs Medical Center , Kansas City, KS 64128 , USA

3. Department of Pharmacology and Toxicology, University of Kansas Medical Center , Kansas City, KS 66160 , USA

4. USDA-ARS, Southeast Area, Arkansas Children’s Nutrition Center , Little Rock, AR 72202 , USA

5. KU Diabetes Institute and Kansas Center for Metabolism and Obesity, University of Kansas Medical Center , Kansas City, KS 66160 , USA

6. Department of Internal Medicine, Division of Endocrinology and Metabolism, University of Kansas Medical Center , Kansas City, KS 66160 , USA

7. Center for Children’s Healthy Lifestyles and Nutrition , Kansas City, MO 64108 , USA

Abstract

Abstract Compared with males, premenopausal women and female rodents are protected against hepatic steatosis and present with higher functioning mitochondria (greater hepatic mitochondrial respiration and reduced H2O2 emission). Despite evidence that estrogen action mediates female protection against steatosis, mechanisms remain unknown. Here we validated a mouse model with inducible reduction of liver estrogen receptor alpha (ERα) (LERKO) via adeno-associated virus (AAV) Cre. We phenotyped the liver health and mitochondrial function of LERKO mice (n = 10-12 per group) on a short-term high-fat diet (HFD), and then tested whether timing of LERKO induction at 2 timepoints (sexually immature: 4 weeks old [n = 11 per group] vs sexually mature: 8-10 weeks old [n = 8 per group]) would impact HFD-induced outcomes. We opted for an inducible LERKO model due to known estrogen-mediated developmental programming, and we reported both receptor and tissue specificity with our model. Control mice were ERαfl/fl receiving AAV with green fluorescent protein (GFP) only. Results show that there were no differences in body weight/composition or hepatic steatosis in LERKO mice with either short-term (4-week) or chronic (8-week) high-fat feeding. Similarly, LERKO genotype nor timing of LERKO induction (pre vs post sexual maturity) did not alter hepatic mitochondrial O2 and H2O2 flux, coupling, or OXPHOS protein. Transcriptomic analysis showed that hepatic gene expression in LERKO was significantly influenced by developmental stage. Together, these studies suggest that hepatic ERα is not required in female protection against HFD-induced hepatic steatosis nor does it mediate sexual dimorphism in liver mitochondria function.

Funder

VA Merit Review

American Heart Award Predoctoral Fellowship

NIH

Publisher

The Endocrine Society

Subject

Endocrinology, Diabetes and Metabolism

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