Thyroid hormone is a critical determinant of cellular metabolism and differentiation. Precise tissue-specific regulation of the active ligand 3,5,3′-triiodothyronine (T3) is achieved by the sequential removal of iodine groups from the thyroid hormone molecule, with type 3 deiodinase (D3) comprising the major inactivating pathway that terminates the action of T3 and prevents activation of the prohormone thyroxine. Using cells endogenously expressing D3, we found that hypoxia induced expression of the D3 gene DIO3 by a hypoxia-inducible factor–dependent (HIF-dependent) pathway. D3 activity and mRNA were increased both by hypoxia and by hypoxia mimetics that increase HIF-1. Using ChIP, we found that HIF-1α interacted specifically with the DIO3 promoter, indicating that DIO3 may be a direct transcriptional target of HIF-1. Endogenous D3 activity decreased T3-dependent oxygen consumption in both neuronal and hepatocyte cell lines, suggesting that hypoxia-induced D3 may reduce metabolic rate in hypoxic tissues. Using a rat model of cardiac failure due to RV hypertrophy, we found that HIF-1α and D3 proteins were induced specifically in the hypertrophic myocardium of the RV, creating an anatomically specific reduction in local T3 content and action. These results suggest a mechanism of metabolic regulation during hypoxic-ischemic injury in which HIF-1 reduces local thyroid hormone signaling through induction of D3.
Warner S. Simonides, Michelle A. Mulcahey, Everaldo M. Redout, Alice Muller, Marian J. Zuidwijk, Theo J. Visser, Frank W.J.S. Wassen, Alessandra Crescenzi, Wagner S. da-Silva, John Harney, Felix B. Engel, Maria-Jesús Obregon, P. Reed Larsen, Antonio C. Bianco, Stephen A. Huang
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Heart Failure Reviews | 2009 |
Knockdown of the Type 3 Iodothyronine Deiodinase (D3) Interacting Protein Peroxiredoxin 3 Decreases D3-Mediated Deiodination in Intact Cells
G Aerts, RA e Drigo, SL Herck, E Sammels, D Mirebeau-Prunier, B Gereben, A Zeöld, JW Harney, SA Huang, MA Mulcahey, SV der Geyten, GV den Bergh, L Arckens, VM Darras, AM Zavacki |
Endocrinology | 2009 |
Deiodination and cellular proliferation: parallels between development, differentiation, tumorigenesis, and now regeneration
SA Huang |
Endocrinology | 2009 |
Cellular and Molecular Basis of Deiodinase-Regulated Thyroid Hormone Signaling1
B Gereben, AM Zavacki, S Ribich, BW Kim, SA Huang, WS Simonides, A Zeöld, AC Bianco |
Endocrine reviews | 2008 |
Type 2 Deiodinase Expression Is Induced by Peroxisomal Proliferator-Activated Receptor-γ Agonists in Skeletal Myocytes
R Grozovsky, S Ribich, ML Rosene, MA Mulcahey, SA Huang, ME Patti, AC Bianco, BW Kim |
Endocrinology | 2008 |
Cardiomyocyte-specific inactivation of thyroid hormone in pathologic ventricular hypertrophy: an adaptative response or part of the problem?
CJ Pol, A Muller, WS Simonides |
Heart Failure Reviews | 2008 |
The Thyroid Hormone-Inactivating Deiodinase Functions as a Homodimer
GD Sagar, B Gereben, I Callebaut, JP Mornon, A Zeöld, C Curcio-Morelli, JW Harney, C Luongo, MA Mulcahey, PR Larsen, SA Huang, AC Bianco |
Molecular Endocrinology | 2008 |
The role of thyroid hormone in the pathophysiology of heart failure: clinical evidence
E Galli, A Pingitore, G Iervasi |
Heart Failure Reviews | 2008 |