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GDF11 inhibits adipogenesis and improves mature adipocytes metabolic function via WNT/β‐catenin and ALK5/SMAD2/3 pathways.

Authors :
Frohlich, Jan
Kovacovicova, Kristina
Raffaele, Marco
Virglova, Tereza
Cizkova, Eliska
Kucera, Jan
Bienertova‐Vasku, Julie
Wabitsch, Martin
Peyrou, Marion
Bonomini, Francesca
Rezzani, Rita
Chaldakov, George N.
Tonchev, Anton B.
Di Rosa, Michelino
Blavet, Nicolas
Hejret, Vaclav
Vinciguerra, Manlio
Source :
Cell Proliferation; Oct2022, Vol. 55 Issue 10, p1-15, 15p
Publication Year :
2022

Abstract

Objective: GDF11 is a member of the TGF‐β superfamily that was recently implicated as potential "rejuvenating" factor, which can ameliorate metabolic disorders. The main objective of the presented study was to closely characterize the role of GDF11 signaling in the glucose homeostasis and in the differentiation of white adipose tissue. Methods: We performed microscopy imaging, biochemical and transcriptomic analyses of adipose tissues of 9 weeks old ob/ob mice and murine and human pre‐adipocyte cell lines. Results: Our in vivo experiments employing GDF11 treatment in ob/ob mice showed improved glucose/insulin homeostasis, decreased weight gain and white adipocyte size. Furthermore, GDF11 treatment inhibited adipogenesis in pre‐adipocytes by ALK5‐SMAD2/3 activation in cooperation with the WNT/β‐catenin pathway, whose inhibition resulted in adipogenic differentiation. Lastly, we observed significantly elevated levels of the adipokine hormone adiponectin and increased glucose uptake by mature adipocytes upon GDF11 exposure. Conclusion: We show evidence that link GDF11 to adipogenic differentiation, glucose, and insulin homeostasis, which are pointing towards potential beneficial effects of GDF11‐based "anti‐obesity" therapy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09607722
Volume :
55
Issue :
10
Database :
Complementary Index
Journal :
Cell Proliferation
Publication Type :
Academic Journal
Accession number :
159470390
Full Text :
https://doi.org/10.1111/cpr.13310