Pathological Interactions Between Mutant Thyroid Hormone Receptors and Corepressors and Their Modulation by a Thyroid

Déborah Harrus1, Hélène Déméné1, Edwin Vasquez2

  • 11 CBS, CNRS, INSERM; INSERM, ICM; University of Montpellier, Montpellier, France.

Abstract

Insights

Thyroid hormone receptor (TR) mutations cause disease by increasing corepressor binding. The agonist TRIAC effectively releases corepressors from mutant TRs, offering a potential therapy for thyroid hormone resistance syndromes.

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Structural Biology

Background:

  • Thyroid hormone receptors (TRs) regulate vital physiological processes.
  • Mutations in TRs can lead to endocrine diseases and cancer by disrupting corepressor release.
  • Specific TR mutants (TRα-M388I, TRβ-Δ430, TRβ-Δ432) are linked to renal cell carcinoma and thyroid hormone resistance.

Purpose of the Study:

  • To quantify the binding affinities between wild-type and mutant TRs and corepressor motifs.
  • To evaluate the effects of thyroid hormone analogues on TR-corepressor interactions.
  • To gain structural insights into corepressor binding to TRs.

Main Methods:

  • Utilized cell-based and biophysical assays to measure TR-corepressor binding affinities.
  • Investigated TR-RXR heterodimer interactions with corepressor fragments in the presence of ligands.
  • Employed nuclear magnetic resonance (NMR) spectroscopy for structural analysis of corepressor binding.

Main Results:

  • TRs exhibit higher affinity for silencing mediator of retinoic acid and thyroid hormone receptors than for NCoR.
  • TRα preferentially binds S-CoRNR3, while TRβ prefers S-CoRNR2; mutants show altered specificity towards CoRNR1 with increased binding strength.
  • The agonist TRIAC and antagonist NH-3 effectively dissociate corepressors from mutant TRβ, unlike T3, with TRIAC showing greater efficacy in facilitating coactivator recruitment.

Conclusions:

  • Clarified specific interaction surfaces underlying the pathology of TR mutants.
  • TRIAC demonstrates potential as a therapeutic agent for resistance to thyroid hormone syndromes due to its efficacy in releasing corepressors from mutant TRs.

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