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◆ Nature2026-05-13· Ribosome

SNOR promotes translation restart after dormancy

Maciej Gluc, Higor Rosa, Maria Bożko, Lesley A Turner, Cassidy R. Prince, Yelena Peskova, Heather A. Feaga, Kathleen L. Gould, Simone Matteï, Ahmad Jomaa

原始摘要(英文原文)· Original abstract
. How inactive eukaryotic ribosomes are reactivated when nutrients return remains unclear. Here, using high-resolution in situ cryo-electron tomography in Schizosaccharomyces pombe, we identify SNOR, an SBDS domain-containing ribosome-associated factor that binds at the peptidyl transferase centre and contacts the hypusinated loop of eIF5A during glucose depletion-induced dormancy. Rather than acting as a canonical hibernation factor, SNOR licenses dormant ribosomes for rapid translational restart. Upon glucose repletion, SNOR and eIF5A act together to promote efficient recovery of polysomes and exit from dormancy. These findings define a stress-responsive ribosome restart module that couples carbon-source limitation to surveillance of the ribosomal active site and reactivation of protein synthesis.
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