4.8 Article

Brown adipocytes local response to thyroid hormone is required for adaptive thermogenesis in adult male mice

Journal

ELIFE
Volume 11, Issue -, Pages -

Publisher

eLIFE SCIENCES PUBL LTD
DOI: 10.7554/eLife.81996

Keywords

thyroid hormone; brown adipose tissue; energy expenditure; thermogenesis; sequencing; Mouse

Categories

Funding

  1. European Union
  2. [2020825753]

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This study used transcriptome and cistrome analyses to identify direct target genes of thyroid hormone (T3) in brown adipocytes and developed a new mouse model to study the role of T3 in brown adipose tissue (BAT). The results showed that T3 plays a crucial role in regulating lipid and glucose metabolism and BAT proliferation, providing new insights into the pathways by which T3 activates energy expenditure through adaptive thermogenesis in BAT.
Thyroid hormone (T3) and its nuclear receptors (TR) are important regulators of energy expenditure and adaptive thermogenesis, notably through their action in the brown adipose tissue (BAT). However, T3 acts in many other peripheral and central tissues which are also involved in energy expenditure. The general picture of how T3 regulates BAT thermogenesis is currently not fully established, notably due to the absence of extensive omics analyses and the lack of specific mice model. Here, we first used transcriptome and cistrome analyses to establish the list of T3/TR direct target genes in brown adipocytes. We then developed a novel model of transgenic mice, in which T3 signaling is specifically suppressed in brown adipocytes at adult stage. We addressed the capacity of these mice to mount a thermogenic response when challenged by either a cold exposure or a high-fat diet, and analyzed the associated changes in BAT transcriptome. We conclude that T3 plays a crucial role in the thermogenic response of the BAT, controlling the expression of genes involved in lipid and glucose metabolism and regulating BAT proliferation. The resulting picture provides an unprecedented view on the pathways by which T3 activates energy expenditure through an efficient adaptive thermogenesis in the BAT.

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