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Updated: Jun 11, 2026

An Orthotopic Mouse Model of Anaplastic Thyroid Carcinoma
Published on: April 17, 2013
Thyrotropin receptor-associated diseases: from adenomata to Graves disease
Terry F Davies1, Takao Ando, Reigh-Yi Lin
1Department of Medicine, Mount Sinai School of Medicine, New York, New York 10029, USA. terry.davies@mssm.edu
Abstract:
The thyroid-stimulating hormone receptor (TSHR) is a G protein-linked, 7-transmembrane domain (7-TMD) receptor that undergoes complex posttranslational processing unique to this glycoprotein receptor family. Due to its complex structure, TSHR appears to have unstable molecular integrity and a propensity toward over- or underactivity on the basis of point genetic mutations or antibody-induced structural changes. Hence, both germline and somatic mutations, commonly located in the transmembrane regions, may induce constitutive activation of the receptor, resulting in congenital hyperthyroidism or the development of actively secreting thyroid nodules. Similarly, mutations leading to structural alterations may induce constitutive inactivation and congenital hypothyroidism. The TSHR is also a primary antigen in autoimmune thyroid disease, and some TSHR antibodies may activate the receptor, while others inhibit its activation or have no influence on signal transduction at all, depending on how they influence the integrity of the structure. Clinical assays for such antibodies have improved significantly and are a useful addition to the investigative armamentarium. Furthermore, the relative instability of the receptor can result in shedding of the TSHR ectodomain, providing a source of antigen and activating the autoimmune response. However, it may also provide decoys for TSHR antibodies, thus influencing their biological action and clinical effects. This review discusses the role of the TSHR in the physiological and pathological stimulation of the thyroid.
Insights
Thyroid-stimulating hormone receptor (TSHR) mutations cause hyperthyroidism or hypothyroidism. TSHR antibodies in autoimmune thyroid disease can activate or inhibit receptor function, impacting thyroid stimulation.
Area of Science:
- Endocrinology
- Molecular Biology
- Immunology
Background:
- The thyroid-stimulating hormone receptor (TSHR) is a G protein-coupled receptor with a complex structure and posttranslational processing.
- TSHR's molecular integrity is relatively unstable, making it susceptible to dysfunction from genetic mutations or antibodies.
Purpose of the Study:
- To review the role of the TSHR in physiological and pathological thyroid stimulation.
- To discuss how TSHR mutations and antibodies contribute to thyroid dysfunction.
Main Methods:
- Literature review of studies on TSHR structure, function, mutations, and antibodies.
- Analysis of clinical data related to TSHR-associated thyroid diseases.
Main Results:
- Germline and somatic TSHR mutations, particularly in transmembrane regions, can lead to constitutive activation (hyperthyroidism) or inactivation (hypothyroidism).
- TSHR antibodies in autoimmune thyroid disease can variably activate or inhibit the receptor, influencing signal transduction.
- TSHR ectodomain shedding can act as an antigen source or a decoy for antibodies, modulating autoimmune responses.
Conclusions:
- TSHR structure and function are critical in thyroid physiology and pathology.
- Understanding TSHR mutations and antibody interactions is essential for diagnosing and managing thyroid disorders.
- Advances in clinical assays for TSHR antibodies aid in thyroid disease investigation.
Related Concept Videos
Synthesis and Regulation of Thyroid Hormones
Upon reaching the thyroid gland, TSH stimulates the follicular cells' active uptake of iodide ions from the blood. The ions diffuse to the apical surface of the cells and are oxidized to iodine. The iodine is then...
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Hyperthyroidism II: Pathophysiology
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Hypothyroidism II: Pathophysiology

