This collaborative study will be performed in Brazil at the Endocrinology Division, Medical School of the Universidade Federal do Rio Grande do Sul, as an extension of NIH grant # RO1 DK-36256 to extend studies on the function of the iodothyronine deiodinases under physiological and pathophysiological circumstances in humans. The types 1, 2, and 3 deiodinases (D1, D2, and D3) constitute a family of oxidoreductases that catalyze the removal of iodine from the outer (D1 and D2, activation) or inner ring (D1 and D3, inactivation) of the thyroid hormones. The deiodination pathway is a critical step in thyroid hormone activation and inactivation, allowing for rapid changes in intracellular thyroid status in a tissue-specific manner, without affecting systemic thyroid hormone levels. In these studies, we will explore the mechanism of catalysis in intact cells by the third member of the selenodeiodinase family, D3. The D3 enzyme catalyzes the inactivation of T4 and T3 and its overexpression, as occurs in large hemangiomas, causes severe hypothyroidism in infants and adults. Increases in D3 activity, causing local hypothyroidism, may also be important in the adaptive response of humans to illness or fasting to conserve energy. Furthermore, increased D3 activity has been demonstrated in failing hearts, indicating that reduction of local intracellular TS may contribute to a hypothyroid condition in the myocardium. Our confocal microscopic studies predict that the active catalytic center of D3 is extracellular. We will determine if thyroid hormone inactivation by D3 occurs in the extracellular space and whether catalysis can be altered by either covalent modification of the enzyme by impermeant probes or by blocking the normal intracellular cycling of D3. The studies proposed here will shed light on the function of this deiodinase and will have major implications for our understanding of factors controlling thyroid hormone levels in healthy and sick individuals. ? ? ?

Agency
National Institute of Health (NIH)
Institute
Fogarty International Center (FIC)
Type
Small Research Grants (R03)
Project #
1R03TW007559-01A1
Application #
7173130
Study Section
International and Cooperative Projects - 1 Study Section (ICP1)
Program Officer
Michels, Kathleen M
Project Start
2007-01-01
Project End
2009-12-31
Budget Start
2007-01-01
Budget End
2007-12-31
Support Year
1
Fiscal Year
2007
Total Cost
$39,372
Indirect Cost
Name
Brigham and Women's Hospital
Department
Type
DUNS #
030811269
City
Boston
State
MA
Country
United States
Zip Code
02115
Wajner, Simone Magagnin; Goemann, Iuri Martin; Bueno, Ana Laura et al. (2011) IL-6 promotes nonthyroidal illness syndrome by blocking thyroxine activation while promoting thyroid hormone inactivation in human cells. J Clin Invest 121:1834-45
Goemann, Iuri Martin; Gereben, Balazs; Harney, John W et al. (2010) Substitution of serine for proline in the active center of type 2 iodothyronine deiodinase substantially alters its in vitro biochemical properties with dithiothreitol but not its function in intact cells. Endocrinology 151:821-9
Marsili, Alessandro; Ramadan, Waile; Harney, John W et al. (2010) Type 2 iodothyronine deiodinase levels are higher in slow-twitch than fast-twitch mouse skeletal muscle and are increased in hypothyroidism. Endocrinology 151:5952-60
Maia, Ana Luiza; Hwang, Shih-Jen; Levy, Daniel et al. (2008) Lack of association between the type 2 deiodinase A/G polymorphism and hypertensive traits: the Framingham Heart Study. Hypertension 51:e22-3
Meyer, Erika L Souza; Goemann, Iuri M; Dora, Jose Miguel et al. (2008) Type 2 iodothyronine deiodinase is highly expressed in medullary thyroid carcinoma. Mol Cell Endocrinol 289:16-22
Wagner, Marcia Santos; Wajner, Simone Magagnin; Maia, Ana Luiza (2008) The role of thyroid hormone in testicular development and function. J Endocrinol 199:351-65