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June 3, 2026The Journal of Toxicological Sciences0 citationsOpen Access

A novel ICP-MS strategy identifies arsenite as an inhibitor of selenocysteine-tRNASec charging

HTHayato TakashimaRMReiko MakinoHTHiroki Taguchi

Key Points

  • This research aims to understand how arsenite affects selenocysteine-tRNA charging and subsequent selenoprotein synthesis.
  • Developed ICP-MS based approach to assess Sec-tRNASec formation
  • Investigated the impact of arsenite on GPx protein induction and tRNASec levels
  • Analyzed RNA-bound selenium and deacylation processes
  • Arsenite significantly inhibits Sec charging of tRNA, leading to decreased selenoprotein synthesis
  • GPx protein induction was markedly suppressed by arsenite, despite no change in mRNA levels
  • Total tRNASec levels remained unchanged, but arsenite reduced RNA-bound selenium, indicating impaired tRNASec formation

Abstract

Arsenite (As(III)) is a widespread environmental contaminant that increases susceptibility to oxidative stress. We recently reported that As(III) suppresses the induction of glutathione peroxidases (GPx) by various selenium sources in cultured cells; however, its underlying mechanism remains unclear. GPx contains a selenocysteine (Sec) residue essential for catalytic activity, and Sec biosynthesis requires multiple steps of selenium metabolism. Selenite is directly incorporated into the Sec biosynthetic pathway via selenophosphate synthetase 2 (SEPHS2) and utilized for Sec-tRNASec formation. Because Sec-tRNASec decodes UGA codons, impaired synthesis of Sec-tRNASec leads to nonsense-mediated decay or truncated translation of selenoprotein mRNAs. Here, we developed an inductively coupled plasma (ICP)-MS based method to evaluate Sec-tRNASec and found that As(III) inhibits Sec charging of tRNA. As(III) markedly suppressed GPx protein induction with minimal effects on mRNA abundance. As(III) did not affect total tRNASec levels; however, As(III) significantly decreased RNA-bound selenium released by deacylation, indicating reduced Sec-tRNASec formation. These results suggest that As(III) impairs selenoprotein translation by inhibiting Sec charging of tRNA.

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Cite This Study

Takashima et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc3d7dee9eb8c0dce56b3https://doi.org/10.2131/jts.51.331
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