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Phoenixin-14 stimulates differentiation of 3T3-L1 preadipocytes via cAMP/Epac-dependent mechanism
Authors:Maria Billert  Tatiana Wojciechowicz  Mariami Jasaszwili  Dawid Szczepankiewicz  Jadwiga Waśko  Sandra Kaźmierczak  Mathias Z. Strowski  Krzysztof W. Nowak  Marek Skrzypski
Affiliation:1. Department of Animal Physiology and Biochemistry, Poznań University of Life Sciences, 60-637 Poznań, Poland;2. Institute of Zoology, Poznań University of Life Sciences, 60-637 Poznań, Poland;3. Department of Hepatology and Gastroenterology, Interdisciplinary Centre of Metabolism: Endocrinology, Diabetes and Metabolism, Charité-University Medicine Berlin, 13353 Berlin, Germany;4. Department of Internal Medicine-Gastroenterology, Park-Klinik Weissensee, 13086 Berlin, Germany
Abstract:Phoenixin-14 (PNX) is a newly discovered peptide produced by proteolytic cleavage of the small integral membrane protein 20 (Smim20). Previous studies showed that PNX is involved in controlling reproduction, pain, anxiety and memory. Furthermore, in humans, PNX positively correlates with BMI suggesting a potential role of PNX in controlling fat accumulation in obesity. Since the influence of PNX on adipose tissue formation has not been so far demonstrated, we investigated the effects of PNX on proliferation and differentiation of preadipocytes using 3T3-L1 and rat primary preadipocytes. We detected Smim20 and Gpr173 mRNA in 3T3-L1 preadipocytes as well as in rat primary preadipocytes. Furthermore, we found that PNX peptide is produced and secreted from 3T3-L1 and rat primary adipocytes. PNX increased 3T3-L1 preadipocytes proliferation and viability. PNX stimulated the expression of adipogenic genes (Pparγ, C/ebpβ and Fabp4) in 3T3-L1 adipocytes. 3T3-L1 preadipocytes differentiated in the presence of PNX had increased lipid content. Stimulation of cell proliferation and differentiation by PNX was also confirmed in rat preadipocytes. PNX failed to induce AKT phosphorylation, however, PNX increased cAMP levels in 3T3-L1 cells. Suppression of Epac signalling attenuated PNX-induced Pparγ expression without affecting cell proliferation. Our data show that PNX stimulates differentiation of 3T3-L1 and rat primary preadipocytes into mature adipocytes via cAMP/Epac-dependent pathway. In conclusion our data shows that phoenixin promotes white adipogenesis, thereby may be involved in controlling body mass regulation.
Keywords:AKT  RAC-alpha serine/threonine-protein kinase  BMI  body mass index  BrdU  5?bromo?2′?deoxyuridine  cAMP  cyclic adenosine monophosphate  CCAAT/enhancer-binding protein beta  Epac  exchange protein directly activated by cAMP  Fabp4  fatty acid binding protein 4  GAPDH  glyceraldehyde 3?phosphate dehydrogenase  GPR173  G Protein-Coupled Receptor 173  IBMX  3?isobutyl?1?methylxanthin  MTT  3?(4,5?dimethylthiazol?2?yl)?2,5?diphenyltetrazolium bromide  PNX  phoenixin  ORO  oil red O  Pparγ  peroxisome proliferator-activated receptor gamma  Smim20  small integral membrane protein 20  T3  triiodothyronine  Adipogenesis  cAMP  Differentiation  Phoenixin  Preadipocytes  Proliferation
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