4.7 Article

The Hepatokine TSK does not affect brown fat thermogenic capacity, body weight gain, and glucose homeostasis

期刊

MOLECULAR METABOLISM
卷 30, 期 -, 页码 184-191

出版社

ELSEVIER
DOI: 10.1016/j.molmet.2019.09.014

关键词

Tsukushi; Hepatokine; Brown adipose tissue; Thermogenesis; Glucose homeostasis; Obesity

资金

  1. Canadian Institutes of Health Research (CIHR) [271671, 374552, FDN143247]
  2. Les Fonds de recherche du Quebece-Sante (FRQS) [24726]
  3. Le Reseau de recherche en sante cardiometabolique, diabete et obesite (CMDO)
  4. Le Reseau de bio-imagerie du Quebec (RBIQ)
  5. La Fondation de l'Institut universitaire de cardiologie et de pneumologie de Quebece-Universite Laval (IUCPQ-UL)
  6. Merck Sharpe and Dohme Corp/Faculte de Medecine de l'Universite Laval
  7. Diabete Quebec

向作者/读者索取更多资源

Objectives: Hepatokines are proteins secreted by the liver that impact the functions of the liver and various tissues through autocrine, paracrine, and endocrine signaling. Recently, Tsukushi (TSK) was identified as a new hepatokine that is induced by obesity and cold exposure. It was proposed that TSK controls sympathetic innervation and thermogenesis in brown adipose tissue (BAT) and that loss of TSK protects against dietinduced obesity and improves glucose homeostasis. Here we report the impact of deleting and/or overexpressing TSK on BAT thermogenic capacity, body weight regulation, and glucose homeostasis. Methods: We measured the expression of thermogenic genes and markers of BAT innervation and activation in TSK-null and TSK-overexpressing mice. Body weight, body temperature, and parameters of glucose homeostasis were also assessed in the context of TSK loss and overexpression. Results: The loss of TSK did not affect the thermogenic activation of BAT. We found that TSK-null mice were not protected against the development of obesity and did not show improvement in glucose tolerance. The overexpression of TSK also failed to modulate thermogenesis, body weight gain, and glucose homeostasis in mice. Conclusions: TSK is not a significant regulator of BAT thermogenesis and is unlikely to represent an effective target to prevent obesity and improve glucose homeostasis. (C) 2019 The Author(s). Published by Elsevier GmbH.

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