Cell
Volume 182, Issue 2, 23 July 2020, Pages 404-416.e14
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Article
Ribosome Collisions Trigger General Stress Responses to Regulate Cell Fate

https://doi.org/10.1016/j.cell.2020.06.006Get rights and content
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Highlights

  • Ribosome collisions trigger the ribotoxic stress response

  • Ribosome collisions activate the GCN2-mediated integrated stress response

  • The MAPKKK ZAK⍺ functions as a sentinel for colliding ribosomes

Summary

Problems arising during translation of mRNAs lead to ribosome stalling and collisions that trigger a series of quality control events. However, the global cellular response to ribosome collisions has not been explored. Here, we uncover a function for ribosome collisions in signal transduction. Using translation elongation inhibitors and general cellular stress conditions, including amino acid starvation and UV irradiation, we show that ribosome collisions activate the stress-activated protein kinase (SAPK) and GCN2-mediated stress response pathways. We show that the MAPKKK ZAK functions as the sentinel for ribosome collisions and is required for immediate early activation of both SAPK (p38/JNK) and GCN2 signaling pathways. Selective ribosome profiling and biochemistry demonstrate that although ZAK generally associates with elongating ribosomes on polysomal mRNAs, it specifically auto-phosphorylates on the minimal unit of colliding ribosomes, the disome. Together, these results provide molecular insights into how perturbation of translational homeostasis regulates cell fate.

Keywords

ribosome collisions
SAPK
integrated stress response
ZAK
UV radiation
amino acid starvation

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