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Title:

Long-Term Cold Adaptation Does Not Require FGF21 or UCP1.

Document type:
Journal Article
Author(s):
Keipert, Susanne; Kutschke, Maria; Ost, Mario; Schwarzmayr, Thomas; van Schothorst, Evert M; Lamp, Daniel; Brachthäuser, Laura; Hamp, Isabel; Mazibuko, Sithandiwe E; Hartwig, Sonja; Lehr, Stefan; Graf, Elisabeth; Plettenburg, Oliver; Neff, Frauke; Tschöp, Matthias H; Jastroch, Martin
Abstract:
Brown adipose tissue (BAT)-dependent thermogenesis and its suggested augmenting hormone, FGF21, are potential therapeutic targets in current obesity and diabetes research. Here, we studied the role of UCP1 and FGF21 for metabolic homeostasis in the cold and dissected underlying molecular mechanisms using UCP1-FGF21 double-knockout mice. We report that neither UCP1 nor FGF21, nor even compensatory increases of FGF21 serum levels in UCP1 knockout mice, are required for defense of body temperature...     »
Journal title abbreviation:
Cell Metab
Year:
2017
Journal volume:
26
Journal issue:
2
Pages contribution:
437-446.e5
Fulltext / DOI:
doi:10.1016/j.cmet.2017.07.016
Pubmed ID:
http://view.ncbi.nlm.nih.gov/pubmed/28768181
Print-ISSN:
1550-4131
TUM Institution:
Lehrstuhl für Stoffwechselerkrankungen (Prof. Tschöp)
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