3,5-T2 Is an Alternative Ligand for the Thyroid Hormone Receptor β1

Author:

Mendoza A.1,Navarrete-Ramírez P.1,Hernández-Puga G.1,Villalobos P.1,Holzer G.2,Renaud J.P.3,Laudet V.2,Orozco A.1

Affiliation:

1. Instituto de Neurobiología (A.M., P.N.-R., G.H.-P., P.V., A.O.), Universidad Nacional Autónoma de México, Querétaro, Querétaro, 76230 México

2. Institut de Génomique Fonctionelle de Lyon (G.H., V.L.), Unité Mixte de Recherche 5242 du Centre National de la Recherche Scientifique, Université de Lyon, Université Claude Bernard Lyon 1, Ecole Normale Supérieure de Lyon, 69364 Lyon, France

3. NovAliX (J.P.R.), 67400 Illkirch, France

Abstract

Abstract Several liganded nuclear receptors have alternative ligands acting in a tissue-specific fashion and playing important biological roles. We present evidence that 3,5-diiodothyronine (T2), a naturally occurring iodothyronine that results from T3 outer-ring deiodination, is an alternative ligand for thyroid hormone receptor β1 (TRβ1). In tilapia, 2 TRβ isoforms differing by 9 amino acids in the ligand-binding domain were cloned. Binding and transactivation studies showed that T2 activates the human and the long tilapia TRβ1 isoform, but not the short one. A chimeric human TRβ1 (hTRβ1) that contained the 9–amino-acid insert showed no response to T2, suggesting that the conformation of the hTRβ1 naturally allows T2 binding and that other regions of the receptor are implicated in TR activation by T2. Indeed, further analysis showed that the N terminus is essential for T2-mediated transactivation but not for that by T3 in the long and hTRβ1, suggesting a functional interaction between the N-terminal domain and the insertion in the ligand-binding domain. To establish the functional relevance of T2-mediated TRβ1 binding and activation, mRNA expression and its regulation by T2 and T3 was evaluated for both isoforms. Our data show that long TRβ1expression is 106-fold higher than that of the short isoform, and T3 and T2 differentially regulate the expression of these 2 TRβ1 isoforms in vivo. Taken together, our results prompted a reevaluation of the role and mechanism of action of thyroid hormone metabolites previously believed to be inactive. More generally, we propose that classical liganded receptors are only partially locked to very specific ligands and that alternative ligands may play a role in the tissue-specific action of receptors.

Publisher

The Endocrine Society

Subject

Endocrinology

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