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  • Wobble decoding by the Escherichia coli selenocysteine insertion machinery.

Wobble decoding by the Escherichia coli selenocysteine insertion machinery.

Nucleic acids research (2013-08-29)
Jianqiang Xu, Victor Croitoru, Dorothea Rutishauser, Qing Cheng, Elias S J Arnér
ABSTRACT

Selenoprotein expression in Escherichia coli redefines specific single UGA codons from translational termination to selenocysteine (Sec) insertion. This process requires the presence of a Sec Insertion Sequence (SECIS) in the mRNA, which forms a secondary structure that binds a unique Sec-specific elongation factor that catalyzes Sec insertion at the predefined UGA instead of release factor 2-mediated termination. During overproduction of recombinant selenoproteins, this process nonetheless typically results in expression of UGA-truncated products together with the production of recombinant selenoproteins. Here, we found that premature termination can be fully avoided through a SECIS-dependent Sec-mediated suppression of UGG, thereby yielding either tryptophan or Sec insertion without detectable premature truncation. The yield of recombinant selenoprotein produced with this method approached that obtained with a classical UGA codon for Sec insertion. Sec-mediated suppression of UGG thus provides a novel method for selenoprotein production, as here demonstrated with rat thioredoxin reductase. The results also reveal that the E. coli selenoprotein synthesis machinery has the inherent capability to promote wobble decoding.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Thioredoxin Reductase from Escherichia coli, ammonium sulfate suspension, >25 units/mg protein (Bradford)
Sigma-Aldrich
Thioredoxin Reductase from rat liver, buffered aqueous glycerol solution, ≥100 units/mg protein (Bradford)