Concurrent D-loop cleavage by Mus81 and Yen1 yields half-crossover precursors
Carreira, R.; Aguado, F. J.; Crugeiras, M.; Sebesta, M.; Krejci, L.; Blanco, M. G.
Show abstract
Homologous recombination involves the formation of branched DNA molecules that may interfere with chromosome segregation. To resolve these persistent joint molecules, cells rely on the activation of structure-selective endonucleases (SSEs) during the late stages of the cell cycle. However, the premature activation of SSEs compromises genome integrity, due to untimely processing of replication/recombination intermediates. Here, we employed a biochemical approach to demonstrate that the budding yeast SSEs Mus81 and Yen1 possess the ability to cleave the central recombination intermediate known as the displacement loop or D-loop. Moreover, we confirm that, consistently with previous genetic data, the simultaneous action of Mus81 and Yen1, followed by ligation, is sufficient to recreate the formation of a half-crossover precursor in vitro. Our results provide not only mechanistic explanation for the formation of a half-crossover, but also highlight the critical importance for precise regulation of these SSEs to prevent chromosomal rearrangements.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Structural coordination between active sites of a Cas6-reverse transcriptase-Cas1--Cas2 CRISPR integrase complex 97%
- The sequential and cooperative action of CSB, CSA and UVSSA targets the TFIIH complex to DNA damage-stalled RNA polymerase II 96%
- Rescuing the bacterial replisome at a nick requires recombinational repair and helicase reloading 96%
Similar papers in this journal
- Molecular insights into the activation of Mre11-Rad50 endonuclease activity by Sae2/CtIP 96%
- DNA nicks in both leading and lagging strand templates can trigger break-induced replication 96%
- Single-molecule analysis reveals cooperative stimulation of Rad51 filament nucleation and growth by mediator proteins 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.