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Hepatocyte estrogen receptor alpha mediates estrogen action to promote reverse cholesterol transport during Western-type diet feeding.

Citation
Zhu, L., et al. “Hepatocyte Estrogen Receptor Alpha Mediates Estrogen Action To Promote Reverse Cholesterol Transport During Western-Type Diet Feeding.”. Molecular Metabolism, pp. 106-116.
Center Vanderbilt University
Author Lin Zhu, Jeanne Shi, Thao N Luu, Joshua C Neuman, Elijah Trefts, Sophia Yu, Brian T Palmisano, David H Wasserman, MacRae F Linton, John M Stafford
Keywords Cholesterol/metabolism, estrogen, Insulin resistance, Reverse cholesterol transport, Sex differences
Abstract

OBJECTIVE: Hepatocyte deletion of estrogen receptor alpha (LKO-ERα) worsens fatty liver, dyslipidemia, and insulin resistance in high-fat diet fed female mice. However, whether or not hepatocyte ERα regulates reverse cholesterol transport (RCT) in mice has not yet been reported.

METHODS AND RESULTS: Using LKO-ERα mice and wild-type (WT) littermates fed a Western-type diet, we found that deletion of hepatocyte ERα impaired in vivo RCT measured by the removal of H-cholesterol from macrophages to the liver, and subsequently to feces, in female mice but not in male mice. Deletion of hepatocyte ERα decreased the capacity of isolated HDL to efflux cholesterol from macrophages and reduced the ability of isolated hepatocytes to accept cholesterol from HDL ex vivo in both sexes. However, only in female mice, LKO-ERα increased serum cholesterol levels and increased HDL particle sizes. Deletion of hepatocyte ERα increased adiposity and worsened insulin resistance to a greater degree in female than male mice. All of the changes lead to a 5.6-fold increase in the size of early atherosclerotic lesions in female LKO-ERα mice compared to WT controls.

CONCLUSIONS: Estrogen signaling through hepatocyte ERα plays an important role in RCT and is protective against lipid retention in the artery wall during early stages of atherosclerosis in female mice fed a Western-type diet.

Year of Publication
2018
Journal
Molecular metabolism
Volume
8
Number of Pages
106-116
Date Published
12/2018
ISSN Number
2212-8778
DOI
10.1016/j.molmet.2017.12.012
Alternate Journal
Mol Metab
PMID
29331506
PMCID
PMC5985047
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