4.8 Article

CRL2 aids elimination of truncated selenoproteins produced by failed UGA/Sec decoding

Journal

SCIENCE
Volume 349, Issue 6243, Pages 91-95

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aab0515

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Funding

  1. Career Development Award from Academia Sinica [101-CDA-L05]
  2. Ministry of Science and Technology (MOST) [103-2311-B-001-034-MY3, 102-2113-M-019-003-MY2]
  3. NIH [AG011085]

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Selenocysteine (Sec) is translated from the codon UGA, typically a termination signal. Codon duality extends the genetic code; however, the coexistence of two competing UGA-decoding mechanisms immediately compromises proteome fidelity. Selenium availability tunes the reassignment of UGA to Sec. We report a CRL2 ubiquitin ligase-mediated protein quality-control system that specifically eliminates truncated proteins that result from reassignment failures. Exposing the peptide immediately N-terminal to Sec, a CRL2 recognition degron, promotes protein degradation. Sec incorporation destroys the degron, protecting read-through proteins from detection by CRL2. Our findings reveal a coupling between directed translation termination and proteolysis-assisted protein quality control, as well as a cellular strategy to cope with fluctuations in organismal selenium intake.

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