Related Experiment Video
Updated: Aug 4, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Defining thyrotropin-dependent and -independent steps of thyroid hormone synthesis by using thyrotropin receptor-null
1Division of Endocrinology, Diabetes and Bone Diseases, Department of Medicine, Mount Sinai School of Medicine, New York, NY 10029, USA. russell.marians@mssm.edu
Abstract:
The thyrotropin (TSH) receptor (TSHR) is a member of the heterotrimeric G protein-coupled family of receptors whose main function is to regulate thyroid cell proliferation as well as thyroid hormone synthesis and release. In this study, we generated a TSHR knockout (TSHR-KO) mouse by homologous recombination for use as a model to study TSHR function. TSHR-KO mice presented with developmental and growth delays and were profoundly hypothyroid, with no detectable thyroid hormone and elevated TSH. Heterozygotes were apparently unaffected. Knockout mice died within 1 week of weaning unless fed a diet supplemented with thyroid powder. Mature mice were fertile on the thyroid-supplemented diet. Thyroid glands of TSHR-KO mice produced uniodinated thyroglobulin, but the ability to concentrate and organify iodide could be restored to TSHR-KO thyroids when cultured in the presence of the adenylate cyclase agonist forskolin. Consistent with this observation was the lack of detectable sodium-iodide symporter expression in TSHR-KO thyroid glands. Hence, by using the TSHR-KO mouse, we provided in vivo evidence, demonstrating that TSHR expression was required for expression of sodium-iodide symporter but was not required for thyroglobulin expression, suggesting that the thyroid hormone synthetic pathway of the mouse could be dissociated into TSHR-dependent and -independent steps.
Insights
Thyrotropin receptor knockout mice are profoundly hypothyroid, demonstrating the receptor
Area of Science:
- Endocrinology
- Molecular Biology
- Genetics
Background:
- The thyrotropin (TSH) receptor (TSHR) regulates thyroid function, including hormone synthesis and release.
- Understanding TSHR's role is crucial for diagnosing and treating thyroid disorders.
Purpose of the Study:
- To generate and characterize a TSHR knockout (TSHR-KO) mouse model.
- To investigate the in vivo role of TSHR in thyroid hormone synthesis and regulation.
Main Methods:
- Homologous recombination was used to create TSHR-KO mice.
- Phenotypic analysis included growth, thyroid hormone levels, and TSH levels.
- Thyroid gland function was assessed by measuring thyroglobulin, iodide organification, and sodium-iodide symporter expression.
Main Results:
- TSHR-KO mice exhibited developmental delays and severe hypothyroidism with elevated TSH.
- Thyroid glands produced uniodinated thyroglobulin, and sodium-iodide symporter expression was absent.
- Iodide uptake and organification could be restored in vitro with forskolin, suggesting TSHR-dependent and -independent pathways.
Conclusions:
- TSHR is essential for sodium-iodide symporter expression and overall thyroid hormone regulation in vivo.
- Thyroid hormone synthesis involves TSHR-dependent and -independent steps.
- The TSHR-KO mouse is a valuable model for studying thyroid physiology and pathophysiology.

