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Publication : Hypermetabolism in mice carrying a near-complete human chromosome 21.

First Author  Sarver DC Year  2023
Journal  Elife Volume  12
PubMed ID  37249575 Mgi Jnum  J:340075
Mgi Id  MGI:7520711 Doi  10.7554/eLife.86023
Citation  Sarver DC, et al. (2023) Hypermetabolism in mice carrying a near-complete human chromosome 21. Elife 12
abstractText  The consequences of aneuploidy have traditionally been studied in cell and animal models in which the extrachromosomal DNA is from the same species. Here, we explore a fundamental question concerning the impact of aneuploidy on systemic metabolism using a non-mosaic transchromosomic mouse model (TcMAC21) carrying a near-complete human chromosome 21. Independent of diets and housing temperatures, TcMAC21 mice consume more calories, are hyperactive and hypermetabolic, remain consistently lean and profoundly insulin sensitive, and have a higher body temperature. The hypermetabolism and elevated thermogenesis are likely due to a combination of increased activity level and sarcolipin overexpression in the skeletal muscle, resulting in futile sarco(endo)plasmic reticulum Ca(2+) ATPase (SERCA) activity and energy dissipation. Mitochondrial respiration is also markedly increased in skeletal muscle to meet the high ATP demand created by the futile cycle and hyperactivity. This serendipitous discovery provides proof-of-concept that sarcolipin-mediated thermogenesis via uncoupling of the SERCA pump can be harnessed to promote energy expenditure and metabolic health.
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