4.5 Article

Adiponectin regulates the circadian rhythm of glucose and lipid metabolism

期刊

JOURNAL OF ENDOCRINOLOGY
卷 254, 期 2, 页码 121-133

出版社

BIOSCIENTIFICA LTD
DOI: 10.1530/JOE-22-0006

关键词

adiponectin; circadian rhythm; liver; metabolism; VLDL; insulin

资金

  1. MEXT/JSPS KAKENHI [17H06096, 17K08291, 17K08392, 18K06725, 19H03175, 20K07020, 20K07956, 21K06536]
  2. Science Research Promotion Fund from The Promotion and Mutual Aid Corporation for Private Schools of Japan (S S, T W), Private University Research Branding Project' from MEXT (S S), A grant for cooperative research in the School of Pharmacy, Nihon Universi
  3. Science Research Promotion Fund from The Promotion and Mutual Aid Corporation for Private Schools of Japan
  4. Private University Research Branding Project' from MEXT
  5. School of Pharmacy, Nihon University
  6. Multidisciplinary Research Grant from Nihon University
  7. Research Grants From Japan Foundation of Institute for Neuropsychiatry

向作者/读者索取更多资源

Deficiency of the adiponectin gene affects the circadian rhythms of liver and serum lipid levels and leads to the loss of time dependency of very-low-density lipoprotein-triglyceride secretion. Glucose tolerance was normal at CT10 but reduced at CT22 in APN (-/-) mice, associated with insulin hyposecretion. In contrast, gluconeogenesis activity was higher in APN (-/-) mice throughout the day compared to APN (+/+) mice.
Adiponectin is a cytokine secreted from adipocytes and regulates metabolism. Although serum adiponectin levels show diurnal variations, it is not clear if the effects of adiponectin are time-dependent. Therefore, this study conducted locomotor activity analyses and various metabolic studies using the adiponectin knockout (APN (-/-)) and the APN (+/+) mice to understand whether adiponectin regulates the circadian rhythm of glucose and lipid metabolism. We observed that the adiponectin gene deficiency does not affect the rhythmicity of core circadian clock genes expression in several peripheral tissues. In contrast, the adiponectin gene deficiency alters the circadian rhythms of liver and serum lipid levels and results in the loss of the time dependency of very-low-density lipoprotein-triglyceride secretion from the liver. In addition, the whole-body glucose tolerance of the APN (-/-) mice was normal at CT10 but reduced at CT22, compared to the APN (+/+) mice. The decreased glucose tolerance at CT22 was associated with insulin hyposecretion in vivo. In contrast, the gluconeogenesis activity was higher in the APN (-/-) mice than in the APN (+/+) mice throughout the day. These results indicate that adiponectin regulates part of the circadian rhythm of metabolism in the liver.

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