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Exogenous GDF11, but not GDF8, reduces body weight and improves glucose homeostasis in mice.
Walker, Ryan G; Barrandon, Ornella; Poggioli, Tommaso; Dagdeviren, Sezin; Carroll, Shannon H; Mills, Melanie J; Mendello, Kourtney R; Gomez, Yanet; Loffredo, Francesco S; Pancoast, James R; Macias-Trevino, Claudio; Marts, Colin; LeClair, Katherine B; Noh, Hye-Lim; Kim, Taekyoon; Banks, Alexander S; Kim, Jason K; Cohen, David E; Wagers, Amy J; Melton, Douglas A; Lee, Richard T.
Affiliation
  • Walker RG; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Barrandon O; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Poggioli T; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Dagdeviren S; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Carroll SH; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Mills MJ; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Mendello KR; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Gomez Y; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Loffredo FS; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Pancoast JR; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Macias-Trevino C; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Marts C; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • LeClair KB; Division of Gastroenterology, Hepatology and Endoscopy, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, 02139, USA.
  • Noh HL; Program in Molecular Medicine, University of Massachusetts Medical School, Worcester, MA, 01605, USA.
  • Kim T; Program in Molecular Medicine, University of Massachusetts Medical School, Worcester, MA, 01605, USA.
  • Banks AS; Division of Endocrinology, Diabetes and Metabolism, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, MA, USA.
  • Kim JK; Program in Molecular Medicine, University of Massachusetts Medical School, Worcester, MA, 01605, USA.
  • Cohen DE; Division of Gastroenterology and Hepatology, Weill Cornell Medicine, New York, NY, USA.
  • Wagers AJ; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Melton DA; Paul F. Glenn Center for the Biology of Aging, Harvard Medical School, Boston, MA, 02115, USA.
  • Lee RT; Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, 02138, USA.
Sci Rep ; 10(1): 4561, 2020 03 12.
Article in En | MEDLINE | ID: mdl-32165710
Insulin resistance is associated with aging in mice and humans. We have previously shown that administration of recombinant GDF11 (rGDF11) to aged mice alters aging phenotypes in the brain, skeletal muscle, and heart. While the closely related protein GDF8 has a role in metabolism, limited data are available on the potential metabolic effects of GDF11 or GDF8 in aging. To determine the metabolic effects of these two ligands, we administered rGDF11 or rGDF8 protein to young or aged mice fed a standard chow diet, short-term high-fat diet (HFD), or long-term HFD. Under nearly all of these diet conditions, administration of exogenous rGDF11 reduced body weight by 3-17% and significantly improved glucose tolerance in aged mice fed a chow (~30% vs. saline) or HF (~50% vs. saline) diet and young mice fed a HFD (~30%). On the other hand, exogenous rGDF8 showed signifcantly lesser effect or no effect at all on glucose tolerance compared to rGDF11, consistent with data demonstrating that GFD11 is a more potent signaling ligand than GDF8. Collectively, our results show that administration of exogenous rGDF11, but not rGDF8, can reduce diet-induced weight gain and improve metabolic homeostasis.
Subject(s)

Full text: 1 Database: MEDLINE Main subject: Body Weight / Aging / Insulin Resistance / Bone Morphogenetic Proteins / Myostatin / Diet, High-Fat Limits: Animals Language: En Journal: Sci Rep Year: 2020 Type: Article Affiliation country: United States

Full text: 1 Database: MEDLINE Main subject: Body Weight / Aging / Insulin Resistance / Bone Morphogenetic Proteins / Myostatin / Diet, High-Fat Limits: Animals Language: En Journal: Sci Rep Year: 2020 Type: Article Affiliation country: United States