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In Vivo Dimerization of Types 1, 2, and 3 Iodothyronine Selenodeiodinases

Authors :
Ann Marie Zavacki
P. Reed Larsen
Antonio C. Bianco
Brian W. Kim
Stephen A. Huang
John W. Harney
Balázs Gereben
Cyntia Curcio-Morelli
Source :
Endocrinology. 144:937-946
Publication Year :
2003
Publisher :
The Endocrine Society, 2003.

Abstract

The goal of the present investigation was to test the hypothesis that types 1, 2, and 3 iodothyronine selenodeiodinases (D1, D2, and D3) can form homodimers. The strategy included transient coexpression of wild-type (wt) deiodinases (target), and FLAG-tagged alanine or cysteine mutants (bait) in human embryonic kidney epithelial cells. SDS-PAGE of the immunoprecipitation pellet of 75Se-labeled cell lysates using anti-FLAG antibody revealed bands of the correct sizes for the respective wt enzymes, which corresponded to approximately 2–5% of the total deiodinase protein in the cell lysate. Western blot analysis with anti-FLAG antibody of lysates of cells transiently expressing individual FLAG-tagged-cysteine deiodinases revealed specific monomeric bands for each deiodinase and additional minor bands of relative molecular mass (Mr) of 55,000 for D1, Mr 62,000 for D2, and Mr 65,000 for D3, which were eliminated by 100 mm dithiothreitol at 100 C. Anti-FLAG antibody immunodepleted 10% of D1 and 38% of D2 activity from lysates of cells coexpressing inactive FLAG-tagged Ala mutants and the respective wt enzymes (D1 or D2) but failed to immunodeplete wtD3 activity. D1 or D2 activities were present in these respective pellets. We conclude 1) that overexpressed selenodeiodinases can homodimerize probably through disulfide bridges; and 2) at least for D1 and D2, monomeric forms are catalytically active, demonstrating that only one wt monomer partner is required for catalytic activity of these two deiodinases.

Details

ISSN :
19457170 and 00137227
Volume :
144
Database :
OpenAIRE
Journal :
Endocrinology
Accession number :
edsair.doi.dedup.....f1903fe744bf6a9f7fb7f16ad03f2837
Full Text :
https://doi.org/10.1210/en.2002-220960