Completed Heart, Stroke & Blood Diabetes, Hormones & Metabolism

Disorders of Thyroid Hormone Action: Diagnosis, Pathophysiology and Therapy

In plain English

AI plain-English summary

A single genetic defect can cause the body’s tissues to ignore thyroid hormone, leading to a confusing mix of symptoms that standard blood tests often miss. This research tackles a fundamental gap: doctors cannot reliably diagnose several rare disorders of thyroid hormone action because the usual hormone-level tests appear normal. The team will map the full range of symptoms caused by mutations in the thyroid hormone receptor TRα, a condition they first identified. They will also develop biochemical markers to distinguish patients with resistance to thyroid hormone (RTHβ) from those with TSH-secreting pituitary tumours, which look similar but require opposite treatments. If successful, the work will give clinicians simple blood tests to diagnose these disorders accurately and guide therapy. For children with MCT8 transporter deficiency—a severe condition that causes brain damage—the researchers will test whether a hormone analogue that bypasses the defective transporter can improve neurodevelopment. The project also explores fundamental mechanisms: how the master regulator SECISBP2 controls selenoprotein production, and how mutant TRα proteins block normal hormone signalling. Understanding these pathways could eventually lead to thyroid hormone analogues that restore function without side effects.

View original technical description
Having discovered that cystic degeneration of aortic media in human selenoprotein deficiency causes its aneurysmal dilatation, we will elucidate its pathogenesis using mice with conditional, aortic selenoprotein depletion and patients stem cell-derived vascular smooth muscle cells and determine whether antioxidants can inhibit this process. We will investigate structure-function relationships in SECISBP2, including how deficiency of this master regulator is variably rate-limiting for synthesis of different selenoproteins. Following our first identification of RTHα, a disorder due to TRα mutations with tissue-selective hypothyroidism but near-normal thyroid hormone levels, we will determine its genetic architecture and phenotypic spectrum. We will identify abnormalities in circulating metabolites and proteins to enable diagnosis of RTHα and guide its therapy. Aided by structural insights, we will design and test thyroid hormone analogues that disrupt mutant TRα-corepressor interaction, the basis of dominant negative inhibition which mediates pathogenesis of the disorder. We will develop biochemical markers to differentially diagnose RTHβ cases from patients with TSH-secreting tumours and to guide RTHβ therapy. In patients with deficiency of the MCT8 thyroid hormone transporter, we will trial whether treatment with triiodothyroacetic acid, a thyroid hormone analogue whose cellular transport is MCT8-independent, alters neurodevelopmental outcome.

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Researchers

Krishna Chatterjee (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Characterization of Human Thyrocyte Biology and its defects in Human Thyroid Disease
Elucidating the genetic and environmental determinants of congenital hypothyroidism
Resetting the THYRoid axis for prevention of AGE-related diseases and co-morbidities
Molecular Mechanisms and Therapies for Parathyroid and Neuroendocrine Disorders
Cellular thyroid hormone availability: regulation of development and tissue repair, and pathogenesis of degenerative disease.

Original classification

Investigator Award in Science

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