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Updated: Jun 17, 2025

Transmembrane Domain Oligomerization Propensity determined by ToxR Assay
Published on: May 26, 2011
TSH Receptor Oligomers Associated With the TSH Receptor Antibody Reactome
Mihaly Mezei1,2, Rauf Latif2,3, Terry F Davies2,3
1Department of Pharmacological Sciences, Icahn School of Medicine at Mount Sinai, New York, 10019, New York, USA.
Abstract:
The TSH receptor (TSHR) and its many forms are the primary antigens of Graves' disease as evidenced by the presence of TSHR antibodies of differing biological activity. The TSH holoreceptor undergoes complex posttranslational changes including cleavage of its ectodomain and oligomer formation. We have previously shown that the TSHR exists in both monomeric and dimeric structures in the thyroid cell membrane and have demonstrated, by modeling, that the transmembrane domains (TMD) can form stable dimeric structures. Based on these earlier simulations of the TSHR-TMD structure and our most recent model of the full-length TSHR, we have now built models of full-length TSHR multimers with and without TSH ligand in addition to multimers of the extracellular leucine-rich domain, the site of TSH and autoantibody binding. Starting from these models we ran molecular dynamics simulations of the receptor oligomers solvated with water and counterions; the full-length oligomers also were embedded in a dipalmitoylphosphatidylcholine bilayer. The full-length TSHR dimer and trimer models stayed in the same relative orientation and distance during 2000 ns (or longer) molecular dynamics simulation in keeping with our earlier report of TMD dimerization. Simulations were also performed to model oligomers of the leucine-rich domain alone; we found a trimeric complex to be even more stable than the dimers. These data provide further evidence that different forms of the TSHR add to the complexity of the immune response to this antigen that, in patients with autoimmune thyroid disease, generate an autoantibody reactome with multiple types of autoantibody to the TSHR.
Insights
The TSH receptor (TSHR) forms multimers, including dimers and trimers, which are crucial for understanding Graves
Area of Science:
- Molecular Biology
- Immunology
- Structural Biology
Background:
- The TSH receptor (TSHR) is a key antigen in Graves' disease, with antibodies targeting its various forms.
- TSHR undergoes posttranslational modifications, including ectodomain cleavage and oligomerization.
- Previous work showed TSHR exists as monomers and dimers, with stable dimeric transmembrane domains (TMDs).
Purpose of the Study:
- To model and simulate full-length TSHR multimers and leucine-rich domain multimers.
- To investigate the stability and structural dynamics of TSHR oligomers.
- To provide further evidence for TSHR structural complexity in autoimmune thyroid disease.
Main Methods:
- Molecular modeling of full-length TSHR multimers (with/without TSH ligand) and leucine-rich domain multimers.
- Molecular dynamics simulations of receptor oligomers in aqueous solution and lipid bilayers.
- Analysis of structural stability and relative orientation of TSHR oligomers over extended simulation times (≥2000 ns).
Main Results:
- Full-length TSHR dimer and trimer models maintained stable orientations and distances during simulations.
- Simulations of leucine-rich domain oligomers revealed trimeric complexes to be more stable than dimers.
- TSHR transmembrane domains (TMDs) form stable dimeric structures.
Conclusions:
- TSHR exists in various multimeric forms, contributing to the complexity of the immune response in autoimmune thyroid disease.
- The stability of TSHR oligomers, particularly trimers of the leucine-rich domain, highlights structural heterogeneity.
- These findings support the concept of an autoantibody reactome targeting multiple TSHR forms in Graves' disease.
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