| Literature DB >> 25807042 |
Liangru Zhu1, Fang Zou, Yongjie Yang, Pingwen Xu, Kenji Saito, Antentor Othrell Hinton, Xiaofeng Yan, Hongfang Ding, Qi Wu, Makoto Fukuda, Zheng Sun, Qingchun Tong, Yong Xu.
Abstract
Circadian disruption has become a significant factor contributing to the epidemics of obesity and insulin resistance. However, interventions to treat metabolic dysfunctions induced by circadian disruptions are limited. The ovarian hormone, estrogen, produces important antiobesity and antidiabetic effects in female animals and has profound effects on daily behavioral rhythms. Here, we show that in female mice depleted with endogenous estrogens, a jet-lag paradigm induced visceral fat accumulation and systemic insulin resistance, which were associated with altered expression of multiple circadian genes in the visceral fat depot. Interestingly, all these jet-lag-induced deficits were completely rescued in female mice supplemented with exogenous estrogens. We further examined 24-hour oscillations of circadian genes in adipose tissues in female mice with estrogen depletion or replacement and showed that expression levels of the circadian gene, period circadian protein homolog 2, oscillate in visceral adipose tissue in an estrogen-dependent manner. Together, our results indicate that estrogens interact with the intrinsic circadian clock in adipose tissue and prevent abnormal lipid accumulation caused by circadian disruptions.Entities:
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Year: 2015 PMID: 25807042 PMCID: PMC4430614 DOI: 10.1210/en.2014-1922
Source DB: PubMed Journal: Endocrinology ISSN: 0013-7227 Impact factor: 4.736