Background Thyroid hormones act in bone and cartilage via thyroid hormone receptor α (TRα). In the absence of T3, TRα interacts with co-repressors, including nuclear receptor co-repressor-1 (NCoR1), which recruit histone deacetylases (HDACs) and mediate transcriptional repression. Dominant-negative mutations of TRα cause resistance to thyroid hormone α (RTHα; OMIM 614450), characterized by excessive repression of T3 target genes leading to delayed skeletal development, growth retardation and bone dysplasia. Treatment with thyroxine has been of limited benefit even in mildly affected individuals and there is a need for new therapeutic strategies. We hypothesized that (i) the skeletal manifestations of RTHα are mediated by the persistent TRα/...
Background: Resistance to Thyroid Hormone alpha (RTHα), a disorder characterised by tissue-selective...
Thyroid Hormone Receptor alpha (TRα) is a transcription factor involved in the regulation of the T3 ...
Thyroid hormone (TH) has many important functions during development and in the adult individual. It...
Mutations in thyroid hormone receptor α (TRα), a ligand-inducible transcription factor, cause Resist...
Mutationsof the thyroidhormone receptoragene (THRA) causehypothyroidism inpatientswith growthandde-v...
Thyroid hormones act via nuclear receptors (TRα1, TRβ1, TRβ2) with differing tissue distribution; th...
Analysis of mice harbouring deletions or mutations of thyroid hormone receptor α (TRα) and β (TRβ) h...
Genetic evidence from patients with mutations of the thyroid hormone receptor α gene (THRA) indicate...
Thyroid hormones act via nuclear receptors (TRα1, TRβ1, TRβ2) with differing tissue distribution; th...
Background: Resistance to thyroid hormone alpha (RTHα), a disorder characterized by tissue-selective...
Thyroid hormones act directly on transcription by binding to TRα1, TRβ1, TRβ2 nuclear receptors, reg...
Mice deficient in thyroid hormone receptor alpha (TRalpha) display hypersensitivity to thyroid hormo...
Mutations in thyroid hormone receptor α (TRα), a ligand-inducible transcription factor, cause resist...
Resistance to thyroid hormone (RTH), a human syndrome, is characterized by high thyroid hormone (TH)...
AbstractThe skeleton is a dynamic organ whose structural integrity depends on constant remodeling, c...
Background: Resistance to Thyroid Hormone alpha (RTHα), a disorder characterised by tissue-selective...
Thyroid Hormone Receptor alpha (TRα) is a transcription factor involved in the regulation of the T3 ...
Thyroid hormone (TH) has many important functions during development and in the adult individual. It...
Mutations in thyroid hormone receptor α (TRα), a ligand-inducible transcription factor, cause Resist...
Mutationsof the thyroidhormone receptoragene (THRA) causehypothyroidism inpatientswith growthandde-v...
Thyroid hormones act via nuclear receptors (TRα1, TRβ1, TRβ2) with differing tissue distribution; th...
Analysis of mice harbouring deletions or mutations of thyroid hormone receptor α (TRα) and β (TRβ) h...
Genetic evidence from patients with mutations of the thyroid hormone receptor α gene (THRA) indicate...
Thyroid hormones act via nuclear receptors (TRα1, TRβ1, TRβ2) with differing tissue distribution; th...
Background: Resistance to thyroid hormone alpha (RTHα), a disorder characterized by tissue-selective...
Thyroid hormones act directly on transcription by binding to TRα1, TRβ1, TRβ2 nuclear receptors, reg...
Mice deficient in thyroid hormone receptor alpha (TRalpha) display hypersensitivity to thyroid hormo...
Mutations in thyroid hormone receptor α (TRα), a ligand-inducible transcription factor, cause resist...
Resistance to thyroid hormone (RTH), a human syndrome, is characterized by high thyroid hormone (TH)...
AbstractThe skeleton is a dynamic organ whose structural integrity depends on constant remodeling, c...
Background: Resistance to Thyroid Hormone alpha (RTHα), a disorder characterised by tissue-selective...
Thyroid Hormone Receptor alpha (TRα) is a transcription factor involved in the regulation of the T3 ...
Thyroid hormone (TH) has many important functions during development and in the adult individual. It...