SummaryPrecise control of the thyroid hormone (T3)-dependent transcriptional program is required by multiple cell systems, including muscle stem cells. Deciphering how this is achieved and how the T3 signal is controlled in stem cell niches is essentially unknown. We report that in response to proliferative stimuli such as acute skeletal muscle injury, type 3 deiodinase (D3), the thyroid hormone-inactivating enzyme, is induced in satellite cells where it reduces intracellular thyroid signaling. Satellite cell-specific genetic ablation of dio3 severely impairs skeletal muscle regeneration. This impairment is due to massive satellite cell apoptosis caused by exposure of activated satellite cells to the circulating TH. The execution of this pr...
Thyroid hormone is a major regulator of skeletal muscle development and repair, and also a key regul...
Thyroid hormone (TH) molecules enter cells via membrane transporters and, depending on the cell type...
Thyroid hormone (TH) transporters are required for the transmembrane passage of TH in target cells. ...
SummaryPrecise control of the thyroid hormone (T3)-dependent transcriptional program is required by ...
Thyroid hormone (TH) regulates such crucial biological functions as normal growth, development and m...
Thyroid hormone is a major determinant of tissue functions in vivo. The deiodinase family controls t...
Abstract The active thyroid hormone 3,5,3' triiodothyronine (T3) is a major regulator of skeletal m...
Thyroid hormones (THs) are key regulators of different biological processes. Their action involves g...
Thyroid hormones (THs) are key regulators of different biological processes. Their action involves g...
Skeletal muscle atrophy is a condition associated with various physiological and pathophysiological ...
Skeletal muscle atrophy is a condition associated with various physiological and patho-physiological...
Thyroid hormones regulate a wide range of cellular responses, via non-genomic and genomic actions, d...
Thyroid hormone (TH) is a key metabolic regulator that acts by coordinating short- and long-term ene...
Background: The type 2 deiodinase (DIO2) converts thyroxine to 3,3′,5-triiodothyronine (T3), modulat...
The iodothyronine deiodinases initiate or terminate thyroid hormone action and therefore are critica...
Thyroid hormone is a major regulator of skeletal muscle development and repair, and also a key regul...
Thyroid hormone (TH) molecules enter cells via membrane transporters and, depending on the cell type...
Thyroid hormone (TH) transporters are required for the transmembrane passage of TH in target cells. ...
SummaryPrecise control of the thyroid hormone (T3)-dependent transcriptional program is required by ...
Thyroid hormone (TH) regulates such crucial biological functions as normal growth, development and m...
Thyroid hormone is a major determinant of tissue functions in vivo. The deiodinase family controls t...
Abstract The active thyroid hormone 3,5,3' triiodothyronine (T3) is a major regulator of skeletal m...
Thyroid hormones (THs) are key regulators of different biological processes. Their action involves g...
Thyroid hormones (THs) are key regulators of different biological processes. Their action involves g...
Skeletal muscle atrophy is a condition associated with various physiological and pathophysiological ...
Skeletal muscle atrophy is a condition associated with various physiological and patho-physiological...
Thyroid hormones regulate a wide range of cellular responses, via non-genomic and genomic actions, d...
Thyroid hormone (TH) is a key metabolic regulator that acts by coordinating short- and long-term ene...
Background: The type 2 deiodinase (DIO2) converts thyroxine to 3,3′,5-triiodothyronine (T3), modulat...
The iodothyronine deiodinases initiate or terminate thyroid hormone action and therefore are critica...
Thyroid hormone is a major regulator of skeletal muscle development and repair, and also a key regul...
Thyroid hormone (TH) molecules enter cells via membrane transporters and, depending on the cell type...
Thyroid hormone (TH) transporters are required for the transmembrane passage of TH in target cells. ...