Parallel control of cold-triggered adipocyte thermogenesis by UCP1 and CKB

Cell Metab. 2024 Mar 5;36(3):526-540.e7. doi: 10.1016/j.cmet.2024.01.001. Epub 2024 Jan 24.

Abstract

That uncoupling protein 1 (UCP1) is the sole mediator of adipocyte thermogenesis is a conventional viewpoint that has primarily been inferred from the attenuation of the thermogenic output of mice genetically lacking Ucp1 from birth (germline Ucp1-/-). However, germline Ucp1-/- mice harbor secondary changes within brown adipose tissue. To mitigate these potentially confounding ancillary changes, we constructed mice with inducible adipocyte-selective Ucp1 disruption. We find that, although germline Ucp1-/- mice succumb to cold-induced hypothermia with complete penetrance, most mice with the inducible deletion of Ucp1 maintain homeothermy in the cold. However, inducible adipocyte-selective co-deletion of Ucp1 and creatine kinase b (Ckb, an effector of UCP1-independent thermogenesis) exacerbates cold intolerance. Following UCP1 deletion or UCP1/CKB co-deletion from mature adipocytes, moderate cold exposure triggers the regeneration of mature brown adipocytes that coordinately restore UCP1 and CKB expression. Our findings suggest that thermogenic adipocytes utilize non-paralogous protein redundancy-through UCP1 and CKB-to promote cold-induced energy dissipation.

Keywords: adipogenesis; body temperature; brown adipose tissue; cold; creatine kinase b; energy expenditure; inducible; parallel; thermogenesis; uncoupling protein 1.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adipocytes, Brown* / metabolism
  • Adipose Tissue, Brown* / metabolism
  • Animals
  • Creatine Kinase, BB Form / metabolism
  • Mice
  • Thermogenesis
  • Uncoupling Protein 1 / genetics
  • Uncoupling Protein 1 / metabolism

Substances

  • Uncoupling Protein 1
  • Creatine Kinase, BB Form
  • Ucp1 protein, mouse