An RNA thermogenic therapy to preserve lean mass and enhance metabolic health during GLP-1 weight loss
Anneke K. Thorne, Nathan J. Waldeck, Jesse P. Rose, Marisa J. Stachowski, Hannah Guak, Alexander R. Keeble, Britta Kuusik, Ella Simon, Biliana Marcheva, Joseph V. Mastroni, Pei Zhu, Ling Wa Chong, Yumiko Kobayashi, Nicholas J. Conley, Andrew B. Cohen, Yasuhiro Omura, Chiaki Omura, Weimin Song, Michael Wellems, Kathryn M. Ramsey, Grant D. Barish, Lisa R. Beutler, Rana K. Gupta, Clara B. Peek, Elizabeth M. McNally, Chelsea Hepler, Mark Perelis, Joseph Bass
Current obesity therapies reduce weight but often fail to preserve lean mass or sustain metabolic benefit. Glucagon-like peptide-1 receptor agonists (GLP-1RA) improve obesity-associated metabolic disease, but weight loss is often accompanied by reduced energy expenditure, loss of lean mass, and rapid fat-predominant regain after treatment discontinuation. We hypothesized that pharmacologic activation of adipose thermogenesis could specifically target fat loss, complement appetite suppression by increasing energy expenditure, and improve the metabolic quality of weight loss. Guided by our finding that diet-induced thermogenesis is mediated by a zinc finger protein 423 (ZFP423)-controlled pathway, we developed adipose-directed antisense oligonucleotides (ASOs) targeting ZFP423, a transcriptional repressor of brown and beige adipocyte identity. In lean and diet-induced obese mice, weekly