David is a young investigator at the Institut Pasteur in the department of Microbiology where he started his group in 2014. David obtained a engineer degree from AgroParisTech as well as a master degree and PhD from Paris Diderot University for his work performed at the Institut Pasteur on the integron bacterial recombination system. He then joined the laboratory of Luciano Marraffini at the Rockefeller University as a postdoctoral fellow where he started to work on CRISPR systems. David is interested in applying engineering principles to better understand and fight pathogenic bacteria.
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2024Delivery of functional Cas:DNA nucleoprotein complexes into recipient bacteria through a type IV secretion system., Proc Natl Acad Sci U S A 2024 Oct; 121(43): e2408509121.
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2024A virally-encoded tRNA neutralizes the PARIS antiviral defence system., Nature 2024 Aug; (): .
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2024In situ targeted base editing of bacteria in the mouse gut., Nature 2024 Aug; 632(8026): 877-884.
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2024Type IV-A3 CRISPR-Cas systems drive inter-plasmid conflicts by acquiring spacers in trans., Cell Host Microbe 2024 May; (): .
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2024Systematic interrogation of CRISPR antimicrobials in Klebsiella pneumoniae reveals nuclease-, guide- and strain-dependent features influencing antimicrobial activity., Nucleic Acids Res 2024 Jun; 52(10): 6079-6091.
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2024Cassette recombination dynamics within chromosomal integrons are regulated by toxin-antitoxin systems., Science Advances , 2024, 10 (2), pp.eadj3498. ⟨10.1126/sciadv.adj3498⟩.
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2023Computational design of novel Cas9 PAM-interacting domains using evolution-based modelling and structural quality assessment., PLoS Comput Biol 2023 Nov; 19(11): e1011621.
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2023Machine learning for evolutionary-based and physics-inspired protein design: Current and future synergies., Curr Opin Struct Biol 2023 Jun; 80(): 102571.
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2023Cas9 off-target binding to the promoter of bacterial genes leads to silencing and toxicity., Nucleic Acids Res 2023 Mar; (): .
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2022Phages and their satellites encode hotspots of antiviral systems., Cell Host Microbe 2022 May; 30(5): 740-753.e5.
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