Human iodotyrosine deiodinase (hIYD) belongs to nitro-FMN reductase superfamily and is responsible for recycling iodine from the I-Tyr (monoiodotyrosine) and I2-Tyr (diiodotyrosine) formed as byproducts of thyroid hormone synthesis. Heterologous expression of hIYD lacking its membrane domain in E. coli provided large quantities of highly pure hIYD that allowed for its physical and biochemical studies. Its kinetic parameters, binding constants and crystal structure were characterized. Substrate was able to induced dramatic effects on FMN coordination in hIYD, including the zwitterionic region of I-Tyr interacts with the N3 and O4 of the FMN, the OH of Thr239 moved close to N5 of FMN (from 4.8 Å to 3.1Å) and allowed the formation of a hydroge...
Reductive dehalogenation offers an attractive approach for removing halogenated pollutants from the ...
Type II iodothyronine 5\u27-deiodinase (5\u27D-II) catalyzes the intracellular conversion of thyroxi...
Pyrimidines are essential components of nucleic acids. In biology, they undergo a number of redox re...
The need for iodide in biology is almost exclusively limited to its role in thyroid hormones, yet th...
Iodide is a well known halogen necessary for development. The majority of iodide processing in biolo...
Iodotyrosine deiodinase (IYD) catalyzes deiodination of mono- and diiodotyrosines (I-Tyr and I2-Tyr)...
The catalytic versatility of flavins encompasses the ability to catalyze one and two electron redox ...
Iodotyrosine deiodinase (IYD) represents the only reductive dehalogenase in mammals that requires fl...
The minimal requirements for substrate recognition and turnover by iodotyrosine deiodinase were exam...
Iodotyrosine deiodinase (IYD) promotes reductive dehalogenation of chloro-, bromo-, and iodotyrosine...
Iodotyrosine deiodinase (IYD) serves a critical role in iodide conservation through salvage of iodid...
Iodotyrosine deiodinases (IYDs) are versatile flavoenzymes. IYD was first discovered in humans as a ...
Activation of thyroxine by outer ring deiodination is the crucial first step of thyroid hormone acti...
Reductive dehalogenation such as that catalyzed by iodotyrosine deiodinase (IYD) is highly unusual i...
Iodothyronine deiodinases are important mediators of thyroid hormone (TH) action. They are present i...
Reductive dehalogenation offers an attractive approach for removing halogenated pollutants from the ...
Type II iodothyronine 5\u27-deiodinase (5\u27D-II) catalyzes the intracellular conversion of thyroxi...
Pyrimidines are essential components of nucleic acids. In biology, they undergo a number of redox re...
The need for iodide in biology is almost exclusively limited to its role in thyroid hormones, yet th...
Iodide is a well known halogen necessary for development. The majority of iodide processing in biolo...
Iodotyrosine deiodinase (IYD) catalyzes deiodination of mono- and diiodotyrosines (I-Tyr and I2-Tyr)...
The catalytic versatility of flavins encompasses the ability to catalyze one and two electron redox ...
Iodotyrosine deiodinase (IYD) represents the only reductive dehalogenase in mammals that requires fl...
The minimal requirements for substrate recognition and turnover by iodotyrosine deiodinase were exam...
Iodotyrosine deiodinase (IYD) promotes reductive dehalogenation of chloro-, bromo-, and iodotyrosine...
Iodotyrosine deiodinase (IYD) serves a critical role in iodide conservation through salvage of iodid...
Iodotyrosine deiodinases (IYDs) are versatile flavoenzymes. IYD was first discovered in humans as a ...
Activation of thyroxine by outer ring deiodination is the crucial first step of thyroid hormone acti...
Reductive dehalogenation such as that catalyzed by iodotyrosine deiodinase (IYD) is highly unusual i...
Iodothyronine deiodinases are important mediators of thyroid hormone (TH) action. They are present i...
Reductive dehalogenation offers an attractive approach for removing halogenated pollutants from the ...
Type II iodothyronine 5\u27-deiodinase (5\u27D-II) catalyzes the intracellular conversion of thyroxi...
Pyrimidines are essential components of nucleic acids. In biology, they undergo a number of redox re...