bioRxiv · 10.64898/2026.06.18.733060
Ubiquitin selective ribosome profiling reveals systematic principles of co-translational quality control
Abstract
Protein biogenesis is a stress- and error-sensitive process that can lead to nascent protein misfolding and aggregation, challenging cellular proteostasis.1 Co-translational ubiquitination (CTU) is a critical surveillance mechanism,2,3 yet its regulatory principles remain unclear due to limited known substrates and the lack of translatome-wide methods to query CTU. Here, we introduce UbSeRP, an approach that enables ubiquitin linkage-specific, and translatome-wide mapping of CTU. Focusing on ribosome-associated quality control (RQC), we expand the known endogenous RQC substrates in S. cerevisiae from few4-7 to thousands, reveal that only a subset of all identified disomes undergoes RQC, and uncover biophysical features of nascent chains that predict RQC engagement. We also identify widespread RQC-independent ubiquitination of nascent proteins, implicating broader roles of CTU in protein complex assembly. In a chronological aging model, we show that aging remodels translation and diminishes RQC engagement, favoring RQC-independent proteasomal pathways. Our findings provide systematic insight into the determinants and adaptability of CTU in maintaining proteostasis under changing physiological conditions.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Seidel, M., Li, S., Geissler, K., Hernandez-Alias, X., Khusainov, I., Kucherenko, Z., Becker, A., Welter, D. K., Kurtulmus, B., Provaznik, J., Wu, J., Langer, J., Nedialkova, D., Gagneur, J., Benes, V., Savitski, M., Frydman, J., Beck, M., Steinmetz, L. M.. 2026-06-19. Ubiquitin selective ribosome profiling reveals systematic principles of co-translational quality control. https://doi.org/10.64898/2026.06.18.733060
Cite the original work for its findings. Save a collection to share your selection of sources.