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AgRP neuron-specific deletion of glucocorticoid receptor leads to increased energy expenditure and decreased body weight in female mice on a high-fat diet

  • Miyuki Shibata
  • , Ryoichi Banno
  • , Mariko Sugiyama
  • , Takashi Tominaga
  • , Takeshi Onoue
  • , Taku Tsunekawa
  • , Yoshinori Azuma
  • , Daisuke Hagiwara
  • , Wenjun Lu
  • , Yoshihiro Ito
  • , Motomitsu Goto
  • , Hidetaka Suga
  • , Yoshihisa Sugimura
  • , Yutaka Oiso
  • , Hiroshi Arima

研究成果: ジャーナルへの寄稿学術論文査読

抄録

Agouti-related protein (AgRP) expressed in the arcuate nucleus is a potent orexigenic neuropeptide, which increases food intake and reduces energy expenditure resulting in increases in body weight (BW). Glucocorticoids, key hormones that regulate energy balance, have been shown in rodents to regulate the expression of AgRP. In this study, we generated AgRP-specific glucocorticoid receptor (GR)-deficient (knockout [KO]) mice. Female and male KO mice on a high-fat diet (HFD) showed decreases in BW at the age of 6 weeks compared with wild-type mice, and the differences remained significant until 16 weeks old. The degree of resistance to diet-induced obesity was more robust in female than in male mice. On a chow diet, the female KO mice showed slightly but significantly attenuated weight gain compared with wild-type mice after 11 weeks, whereas there were no significant differences in BW in males between genotypes. Visceral fat pad mass was significantly decreased in female KO mice on HFD, whereas there were no significant differences in lean body mass between genotypes. Although food intake was similar between genotypes, oxygen consumption was significantly increased in female KO mice on HFD. In addition, the uncoupling protein-1 expression in the brown adipose tissues was increased in KO mice. These data demonstrate that the absence of GR signaling in AgRP neurons resulted in increases in energy expenditure accompanied by decreases in adiposity in mice fed HFD, indicating that GR signaling in AgRP neurons suppresses energy expenditure under HFD conditions.

本文言語英語
ページ(範囲)1457-1466
ページ数10
ジャーナルEndocrinology
157
4
DOI
出版ステータス出版済み - 04-2016
外部発表はい

UN SDG

この成果は、次の持続可能な開発目標に貢献しています

  1. SDG 3 - すべての人に健康と福祉を
    SDG 3 すべての人に健康と福祉を

All Science Journal Classification (ASJC) codes

  • 内分泌学

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