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....
3,5-diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
Growth hormone receptor knockout (GHRKO) mice are smaller, long living, and have an increased metabo...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
Thyroid hormone (T3) and its nuclear receptors (TR) are important regulators of energy expenditure a...
: Adaptive thermogenesis in small mammals and infants takes place in the brown adipose tissue (BAT)....
Unable to activate brown adipose tissue (BAT) thermogenesis, alphaT3-receptor-deficient mice (Thra-0...
The thyroid hormone triiodothyronine (T3) activates thermogenesis by uncoupling electron transport f...
Objective: Classically, metabolic effects of thyroid hormones (THs) have been considered to be perip...
We have examined the metabolic role of hormone-binding nuclear thyroid hormone receptors (TRs). Mice...
SummaryThe functional conversion of white adipose tissue (WAT) into a tissue with brown adipose tiss...
Thyroid hormones significantly influence energy expenditure by affecting the activity of metabolic a...
The adipokine adipocyte fatty acid-binding protein (A-FABP) has been implicated in obesity-related c...
OBJECTIVE—Thyroid hormone accelerates energy expendi-ture; thus, hypothyroidism is intuitively assoc...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
Thyroid hormones significantly influence energy expenditure by affecting the activity of metabolic a...
3,5-diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
Growth hormone receptor knockout (GHRKO) mice are smaller, long living, and have an increased metabo...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
Thyroid hormone (T3) and its nuclear receptors (TR) are important regulators of energy expenditure a...
: Adaptive thermogenesis in small mammals and infants takes place in the brown adipose tissue (BAT)....
Unable to activate brown adipose tissue (BAT) thermogenesis, alphaT3-receptor-deficient mice (Thra-0...
The thyroid hormone triiodothyronine (T3) activates thermogenesis by uncoupling electron transport f...
Objective: Classically, metabolic effects of thyroid hormones (THs) have been considered to be perip...
We have examined the metabolic role of hormone-binding nuclear thyroid hormone receptors (TRs). Mice...
SummaryThe functional conversion of white adipose tissue (WAT) into a tissue with brown adipose tiss...
Thyroid hormones significantly influence energy expenditure by affecting the activity of metabolic a...
The adipokine adipocyte fatty acid-binding protein (A-FABP) has been implicated in obesity-related c...
OBJECTIVE—Thyroid hormone accelerates energy expendi-ture; thus, hypothyroidism is intuitively assoc...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
Thyroid hormones significantly influence energy expenditure by affecting the activity of metabolic a...
3,5-diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
Growth hormone receptor knockout (GHRKO) mice are smaller, long living, and have an increased metabo...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...