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J Biol Chem ; 290(49): 29178-88, 2015 Dec 04.
Article in English | MEDLINE | ID: mdl-26378233

ABSTRACT

The synthesis of selenocysteine-containing proteins (selenoproteins) involves the interaction of selenocysteine synthase (SelA), tRNA (tRNA(Sec)), selenophosphate synthetase (SelD, SPS), a specific elongation factor (SelB), and a specific mRNA sequence known as selenocysteine insertion sequence (SECIS). Because selenium compounds are highly toxic in the cellular environment, the association of selenium with proteins throughout its metabolism is essential for cell survival. In this study, we demonstrate the interaction of SPS with the SelA-tRNA(Sec) complex, resulting in a 1.3-MDa ternary complex of 27.0 ± 0.5 nm in diameter and 4.02 ± 0.05 nm in height. To assemble the ternary complex, SPS undergoes a conformational change. We demonstrated that the glycine-rich N-terminal region of SPS is crucial for the SelA-tRNA(Sec)-SPS interaction and selenoprotein biosynthesis, as revealed by functional complementation experiments. Taken together, our results provide new insights into selenoprotein biosynthesis, demonstrating for the first time the formation of the functional ternary SelA-tRNA(Sec)-SPS complex. We propose that this complex is necessary for proper selenocysteine synthesis and may be involved in avoiding the cellular toxicity of selenium compounds.


Subject(s)
Escherichia coli Proteins/metabolism , Escherichia coli/metabolism , RNA, Transfer, Amino Acid-Specific/metabolism , Selenocysteine/biosynthesis , Amino Acid Sequence , Anisotropy , Base Sequence , Cloning, Molecular , Escherichia coli/enzymology , Genetic Complementation Test , Microscopy, Atomic Force , Models, Molecular , Molecular Sequence Data , Mutation , Phosphotransferases/metabolism , Protein Binding , Protein Conformation , Sequence Homology, Amino Acid , Spectroscopy, Fourier Transform Infrared , Transferases/metabolism
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