Clearing of ribosome collisions by the ribosome quality control trigger complex RQT
Best, K. M.; Ikeuchi, K.; Kater, L.; Best, D. M.; Musial, J.; Matsuo, Y.; Berninghausen, O.; Becker, T.; Inada, T.; Beckmann, R.
Show abstract
After translational stalls, colliding eukaryotic ribosomes are cleared through dissociation into subunits by the ribosome quality control trigger complex, RQT, by an unknown mechanism. Here we show that RQT requires accessible mRNA and the presence of a neighboring ribosome. Cryo-EM of several RQT-ribosome complexes revealed the structural basis of splitting: RQT engages the 40S subunit of the lead ribosome and can switch between two conformations. We propose a mechanistic model in which the Slh1 helicase subunit of RQT applies a pulling force on the mRNA, causing destabilizing conformational changes of the 40S subunit. The collided ribosome functions as a ram or giant wedge, ultimately resulting in subunit dissociation. Our findings provide a first conceptual framework for a helicase driven ribosomal splitting mechanism. One-Sentence SummaryRQT clears collided ribosomes by pulling mRNA to trigger destabilizing conformational transitions for subunit dissociation.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- A conserved rRNA switch is central to decoding site maturation on the small ribosomal subunit 98%
- Molecular and structural basis of a subfamily of PrfH rescuing both the damaged and intact ribosomes stalled in translation 97%
- Structure of a TRAPPII-Rab11 activation intermediate reveals GTPase substrate selection mechanisms 96%
"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.