A legacy role for DNA binding of Lon protects against genotoxic stress
Zeinert, R. D.; Ogdahl, J.; Liu, J.; Yang, Q.; Du, Y.; Barros, B. B.; Freddolino, P. L.; Haynes, C.; Chien, P.
Show abstract
DNA binding proteins are essential for cellular life, but persistently bound complexes have toxic consequences. Here we show that the proteotoxic responsive bacterial protease Lon clears proteins from DNA to promote genotoxic stress resistance. Purified Lon binds DNA and degrades neighboring bound proteins, while a fully active DNA-blind Lon variant does not. This variant can degrade substrates as normal during unstressed growth, complements pleotropic phenotypes of {Delta}lon, including proteotoxic resilience, but remains sensitive to genotoxic stresses and fails to degrade proteins efficiently during DNA damage. Transposon sequencing reveals that {Delta}lon is vulnerable to loss of protein-DNA eviction factors and we use dynamic nucleoid occupancy profiling to show that chromosome-wide protein turnover relies on Lon DNA binding. Finally, disrupting Lon binding to mitochondria genomes also results in genotoxic stress sensitivity, consistent with the bacterial ancestry of this organelle. We propose that clearance of persistent proteins from DNA by Lon originated in free-living -proteobacteria and maintained during the evolution of mitochondria. SummaryDNA binding by the Lon protease protects against genotoxic damage in a manner preserved from bacteria to mitochondria.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Coordination between nucleotide excision repair and specialized polymerase DnaE2 action enables DNA damage survival in non-replicating bacteria 97%
- DNA-Stimulated Liquid-Liquid Phase Separation by Eukaryotic Topoisomerase II Modulates Catalytic Function 95%
- Fine-tuning of the Smc flux facilitates chromosome organization in B. subtilis 95%
Similar papers in this journal
- A stable leading strand polymerase/clamp loader complex is required for normal and perturbed eukaryotic DNA replication 96%
- Multifaceted roles of H2B mono-ubiquitylation in D-loop metabolism during homologous recombination repair 96%
- Transcription feedback dynamics in the wake of cytoplasmic degradation shutdown 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.