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Methods (San Diego, Calif.)|May 13, 2019
CRISPR/Cas9 as a tool to dissect cancer mutationsShady Sayed, Maciej Paszkowski-Rogacz, Lukas Theo Schmitt, et al.Nature Communications|December 27, 2022
Prediction of designer-recombinases for DNA editing with generative deep learningLukas Theo Schmitt, Maciej Paszkowski-Rogacz, Florian Jug, et al.Nucleic Acids Research|November 21, 2019
A heterodimer of evolved designer-recombinases precisely excises a human genomic DNA locusFelix Lansing, Maciej Paszkowski-Rogacz, Lukas Theo Schmitt, et al.Nucleic Acids Research|May 9, 2023
Discovery and characterization of novel Cre-type tyrosine site-specific recombinases for advanced genome engineeringMilica Jelicic, Lukas Theo Schmitt, Maciej Paszkowski-Rogacz, et al.Genome Biology|November 7, 2023
Quantification of evolved DNA-editing enzymes at scale with DEQSeqLukas Theo Schmitt, Aksana Schneider, Jonas Posorski, et al.Life Science Alliance|March 15, 2022
DNA methylation-independent long-term epigenetic silencing with dCRISPR/Cas9 fusion proteinsLi Ding, Lukas Theo Schmitt, Melanie Brux, et al.Nucleic Acids Research|December 24, 2021
Pairing of single mutations yields obligate Cre-type site-specific recombinasesJenna Hoersten, Gloria Ruiz-Gómez, Felix Lansing, et al.Nature Biotechnology|January 31, 2024
Activation of recombinases at specific DNA loci by zinc-finger domain insertionsLiliya Mukhametzyanova, Lukas Theo Schmitt, Julia Torres-Rivera, et al.Nature Communications|January 21, 2022
Correction of a Factor VIII genomic inversion with designer-recombinasesFelix Lansing, Liliya Mukhametzyanova, Teresa Rojo-Romanos, et al.Pageof 1