Valérie Borde

@lab-borde.bsky.social

We study recombination, chromosomes, meiosis

A three-year PhD position is available within the team, starting no later than October 2026, to decipher the molecular signatures of chromosomal instability in response to replication stress and how nuclear architecture shapes these signatures in yeast. Please RT. fr.scribd.com/document/934...

Offer PhD Position Team Lambert | PDF | Genetics | Life Sciences

3-year PhD offer in biology to mechanisms of complex rearrangements of the genome.

fr.scribd.com

We are hiring! We are looking for a motivated and enthusiastic postdoc to study mammalian DSB repair using innovative genomic approaches. Our lab is at the Curie Institute in Paris and offers vibrant scientific environnement and cutting edge platforms. Please repost or apply here: lnkd.in/eJ9q3QrR

Institut Curie hiring Postdoctoral Position in Mammalian DSB Repair (F/M) in Paris, Île-de-France, France | LinkedIn

Posted 8:04:09 PM. About UsInstitut Curie Research CenterInstitut Curie is a major player in the research and fight…See this and similar jobs on LinkedIn.

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We’re happy to present a new preprint from the lab, where we identify new mechanisms that drive the recruitment of Mre11 to recombination sites during meiosis. Work led by star student Priyanka Priyadarshini with help from colleagues and funded by the ERC and FNRS. www.biorxiv.org/content/10.1...

Recruitment of Mre11 to recombination sites during meiosis

The Mre11 nuclease, part of the conserved MRX complex involved in the repair of DNA double-strand breaks (DSBs), is also essential to initiate meiotic recombination in budding yeast by promoting Spo11-induced DSBs. Recruitment of Mre11 to meiotic DSB sites depends on Rec114-Mei4 and Mer2 (RMM) that organize the meiotic DSB machinery by a mechanism involving biomolecular condensation. Here, we explored the role of Mre11 during meiosis and its relationship to RMM condensation. We show that both Mre11 and MRX complexes form DNA-dependent, hexanediol sensitive condensates in vitro. In vivo, Mre11 assembles into DNA damage-dependent foci in vegetative cells and DSB-independent foci in meiotic cells. In vitro condensates and in vivo foci both depend on the C-terminal intrinsically-disordered region (IDR) of Mre11. Importantly, while the Mre11 IDR is dispensable for vegetative DNA repair it is essential during meiosis. The C-terminus of Mre11 forms a short alpha-helix that binds a conserved region of Mer2, and mutating residues within this interface reduces Mre11 foci and DSB formation. Finally, we identified a SUMO-interacting motif within the Mre11 IDR that enhances recruitment of Mre11 during meiosis and facilitates DSB formation. This work identifies multiple mechanisms that collaborate to recruit Mre11 during meiosis to initiate recombination. ### Competing Interest Statement The authors have declared no competing interest. European Research Council, 802525 Fonds National de la Recherche Scientifique, Bruxelles, BE, T.0031.22 Research Council VUB, SRP95, OZR3939 National Institute of Health, US, R01GM074223

biorxiv.org

Please see our latest paper on the role of EXO1 in meiosis: "EXO1 promotes the meiotic MLH1-MLH3 endonuclease through conserved interactions with MLH1, MSH4 and DNA". Congratulations to both first authors, Megha Roy and Aurore Sanchez and thanks to all our collaborators!

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