A Novel Stress Response Pathway Regulates Ribosome Biogenesis
Szaflarski, W.; Sowinski, M.; Lesniczak, M.; Ojha, S.; Aulas, A.; Dave, D.; Malla, S.; Anderson, P.; Ivanov, P.; Lyons, S. M.
Show abstract
Production of ribosomes is an energy-intensive process owing to the intricacy of these massive macromolecular machines. Each human ribosome contains 80 ribosomal proteins and four non-coding RNAs. Accurate assembly requires precise regulation of protein and RNA subunits. In response to stress, the integrated stress response (ISR) rapidly inhibits global translation. How rRNA is coordinately regulated with the rapid inhibition of ribosomal protein synthesis is not known. Here we show that stress specifically inhibits the first step of rRNA processing. Unprocessed rRNA is stored within the nucleolus, and, when stress resolves, it re-enters the ribosome biogenesis pathway. Retention of unprocessed rRNA within the nucleolus aids in the maintenance of this organelle. This response is independent of the ISR or inhibition of cellular translation but represents an independent stress-response pathway that we term Ribosome Biogenesis Stress Response (RiBiSR). Failure to coordinately regulate ribosomal protein translation and rRNA production results in nucleolar fragmentation. Our study unveils a novel stress response pathway that aims at conserving energy, preserving the nucleolus, and prevents further stress by regulation of rRNA processing.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Selective recruitment of endoplasmic reticulum-targeted and cytosolic mRNAs into membrane-associated stress granules 97%
- RNA partitioning into stress granules is based on the summation of multiple interactions 95%
- Thioredoxin regulates the redox state and the activity of the human tRNA ligase complex 95%
Similar papers in this journal
- Human eIF2A has a minimal role in translation initiation and in uORF-mediated translational control in HeLa cells 96%
- Cytosolic aspartate aminotransferase moonlights as a ribosome binding modulator of Gcn2 activity during oxidative stress 96%
- Torsin ATPases influence chromatin interaction of the Torsin regulator LAP1 95%
Similar papers in this journal
- A stress-induced Tyrosine tRNA depletion response mediates codon-based translational repression and growth suppression 97%
- Cold induced chromatin compaction and nuclear retention of clock mRNAs resets the circadian rhythm 96%
- eIF3 mRNA selectivity profiling reveals eIF3k as a cancer-relevant regulator of ribosome content 95%
Similar papers in this journal
- Endonucleolytic RNA cleavage drives changes in gene expression during the innate immune response 96%
- Numerous post-translational modifications of RNA polymerase II subunit Rpb4 link transcription to post-transcriptional mechanisms 96%
- The GATA transcription factor Gaf1 represses tRNA genes, inhibits growth, and extends chronological lifespan downstream of fission yeast TORC1 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.