Crystal structure of lodotyrosine deiodinase, a novel flavoprotein responsible for lodide salvage in thyroid glands

71Citations
Citations of this article
60Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

The flavoprotein iodotyrosine deiodinase (IYD) salvages iodide from mono- and diiodotyrosine formed during the biosynthesis of the thyroid hormone thyroxine. Expression of a soluble domain of this membrane-bound enzyme provided sufficient material for crystallization and characterization by x-ray diffraction. The structures of IYD and two co-crystals containing substrates, mono- and, diiodotyrosine, alternatively, were solved at resolutions of 2.0, 2.45; and 2.6 Å, respectively. The structure of IYD is homologous to others in the NADH oxidase/flavin reductase superfamily, but the position of the active site lid in IYD defines a new subfamily within this group that includes BluB, an enzyme associated with vitamin B12 biosynthesis. IYD and BluB also share key interactions involving their bound flavin mononucleotide that suggest a unique catalytic behavior within the superfamily. Substrate coordination to IYD induces formation of an additional helix and coil that act as an active site lid to shield the resulting substrate-flavin complex from solvent. This complex is stabilized by aromatic stacking and extensive hydrogen bonding between the substrate and flavin. The carbon-iodine bond of the substrate is positioned directly over the C-4a/N-5 region of the flavin to promote electron transfer. These structures now also provide a molecular basis for understanding thyroid disease based on mutations of IYD. © 2009 by The American Society for Biochemistry and Molecular Biology, Inc.

Cite

CITATION STYLE

APA

Thomas, S. R., McTamney, P. M., Adler, J. M., LeRonde-LeBlanc, N., & Rokita, S. E. (2009). Crystal structure of lodotyrosine deiodinase, a novel flavoprotein responsible for lodide salvage in thyroid glands. Journal of Biological Chemistry, 284(29), 19659–19667. https://doi.org/10.1074/jbc.M109.013458

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free