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Syndromes of Resistance to Thyroid Hormone Action
Luca Persani1,2, Irene Campi3,4
1Department of Clinical Sciences and Community Health, University of Milan, Milan, Italy. luca.persani@unimi.it.
Abstract:
Thyroid hormone (TH) action is crucial for the development of several tissues.A number of syndromes are associated with reduced responsiveness to thyroid hormones, expanding the original definition of thyroid hormone resistance, firstly described by Refetoff and collaborators in 1967, which is characterized by elevated circulating levels of T4 and T3 with measurable serum TSH concentrations, as a consequence of mutations of thyroid hormone receptor beta (TRβ), recently named as RTHβ. More recently, another form of insensitivity to TH has been identified due to mutations in the thyroid hormone receptor alpha (TRα), named RTHα. In this chapter we will focus the discussion on the phenotype of RTHβ and RTHα. These diseases share the same pathogenic mechanism caused by dominant negative mutations in TH receptor genes that reduce T3 binding or affect the recruitment of cofactors. As a consequence, thyroid hormone actions are impaired at the tissue level. The phenotypic manifestations of RTHβ and RTHα are to some extent correlated with the degree of disruption and the tissue distribution of the TRs being characterized by variable coexistence of hypothyroid or thyrotoxic manifestations in RTHβ or by a congenital hypothyroid features in RTHα despite normal TSH and borderline low free T4.
Insights
Thyroid hormone resistance (RTH) involves impaired tissue response to thyroid hormones due to mutations in TRβ or TRα genes. These genetic defects cause varied hypothyroid or thyrotoxic symptoms, impacting development.
Area of Science:
- Endocrinology
- Molecular Biology
- Genetics
Background:
- Thyroid hormone (TH) is vital for tissue development.
- Thyroid hormone resistance (RTH) encompasses syndromes of reduced TH responsiveness.
- RTH is caused by mutations in thyroid hormone receptor genes (TRβ and TRα).
Purpose of the Study:
- To discuss the phenotypes of RTHβ and RTHα.
- To explain the shared pathogenic mechanism of RTHβ and RTHα.
- To correlate phenotypic manifestations with receptor disruption and tissue distribution.
Main Methods:
- Review of existing literature on RTHβ and RTHα.
- Analysis of pathogenic mechanisms involving dominant-negative mutations.
- Correlation of clinical phenotypes with genetic mutations and receptor characteristics.
Main Results:
- RTHβ and RTHα result from dominant-negative mutations in TRβ and TRα, respectively.
- Mutations impair T3 binding or cofactor recruitment, leading to reduced TH action.
- Phenotypes vary based on mutation severity and TR tissue distribution, showing mixed hypothyroid/thyrotoxic (RTHβ) or congenital hypothyroid (RTHα) features.
Conclusions:
- RTHβ and RTHα represent distinct forms of TH insensitivity.
- Understanding RTH phenotypes is crucial for diagnosis and management.
- Genetic and molecular insights into TR mutations explain the diverse clinical presentations of RTH.
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