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Nature|February 19, 2025
SPO11 dimers are sufficient to catalyse DNA double-strand breaks in vitroCédric Oger, Corentin Claeys BouuaertPlos One|January 24, 2013
Hsmar1 transposition is sensitive to the topology of the transposon donor and the targetCorentin Claeys Bouuaert, Ronald ChalmersPlos Genetics|May 16, 2017
Distinct DNA-binding surfaces in the ATPase and linker domains of MutLγ determine its substrate specificities and exert separable functions in meiotic recombination and mismatch repairCorentin Claeys Bouuaert, Scott KeeneyNucleic Acids Research|October 28, 2009
Transposition of the human Hsmar1 transposon: rate-limiting steps and the importance of the flanking TA dinucleotide in second strand cleavageCorentin Claeys Bouuaert, Ronald ChalmersNucleic Acids Research|October 17, 2017
A single active site in the mariner transposase cleaves DNA strands of opposite polarityCorentin Claeys Bouuaert, Ronald ChalmersDNA and Cell Biology|May 19, 2025
In Vitro Reconstitution of SPO11-Mediated DNA Cleavage Sheds New Light on the Initiation of Meiotic RecombinationCédric Oger, Corentin Claeys BouuaertFrontiers in Cell and Developmental Biology|March 22, 2021
Mechanism and Control of Meiotic DNA Double-Strand Break Formation in S. cerevisiaeVikash Kumar Yadav, Corentin Claeys BouuaertGenetica|August 4, 2009
Gene therapy vectors: the prospects and potentials of the cut-and-paste transposonsCorentin Claeys Bouuaert, Ronald M ChalmersMolecular and Cellular Biology|November 3, 2010
A simple topological filter in a eukaryotic transposon as a mechanism to suppress genome instabilityCorentin Claeys Bouuaert, Danxu Liu, Ronald ChalmersMicrobiology Spectrum|June 25, 2015
Mariner and the ITm Superfamily of TransposonsMichael Tellier, Corentin Claeys Bouuaert, Ronald ChalmersPageof 3