Ligne de temps

Aude Bernheim
Responsable de Structure
24 juil. 2025
publication

A human homolog of SIR2 antiphage proteins mediates immunity via the Toll-like receptor pathway

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08 mai 2025
publication

Sedentary chromosomal integrons as biobanks of bacterial antiphage defense systems.

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02 janv. 2025
publication

Evolutionary origins of archaeal and eukaryotic RNA-guided RNA modification in bacterial IS110 transposons.

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01 janv. 2025
publication

Strain phylogroup and environmental constraints shape Escherichia coli dynamics and diversity over a 20-year human gut time series

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09 déc. 2024
publication

Exploring the diversity of anti-defense systems across prokaryotes, phages and mobile genetic elements.

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01 nov. 2024
publication

Prediction of strain level phage-host interactions across the Escherichia genus using only genomic information.

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23 août 2024
publication

Conservation of antiviral systems across domains of life reveals immune genes in humans

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07 août 2024
publication

A virally encoded tRNA neutralizes the PARIS antiviral defence system

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04 juil. 2024
publication

Viperin immunity evolved across the tree of life through serial innovations on a conserved scaffold

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01 juil. 2024
publication

The immune modules conserved across the tree of life: Towards a definition of ancestral immunity.

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24 juin 2024
event

Seminar Joe Bondy-Denomy “A bacteriophage that evades immune nucleases by pretending to be a eukaryote”

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26 janv. 2024
publication

A Comprehensive Resource for Exploring Antiphage Defense: DefenseFinder Webservice, Wiki and Databases

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08 déc. 2023
news

Many congratulations to Aude Bernheim, appointed as Member of the Presidential Council of Science

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24 nov. 2023
event

“GG department seminar: Carrie Shaffer (University of Kentucky, USA) ; “New insights into ancient mechanisms underscoring trans-kingdom DNA conjugation” ; Thursday 7 December @ 11.00 am ; Auditorium François Jacob

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01 nov. 2023
publication

Immunité bactérienne : à la découverte d’un nouveau monde [Bacterial immunity: Uncovering a new world]

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01 oct. 2023
publication

The highly diverse antiphage defence systems of bacteria.

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25 sept. 2023
event

The twilight zone between transposons and endogenous retroviruses

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01 août 2023
publication

Genomic characterization of the antiviral arsenal of Actinobacteria.

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16 mars 2023
team

Diversité moléculaire des microbes

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01 févr. 2023
publication

Synergy and regulation of antiphage systems: toward the existence of a bacterial immune system?

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09 nov. 2022
publication

An expanded arsenal of immune systems that protect bacteria from phages.

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01 nov. 2022
publication

Multiple phage resistance systems inhibit infection via SIR2-dependent NAD+ depletion.

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01 juin 2022
publication

CRISPR-Cas and restriction-modification team up to achieve long-term immunity.

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11 mai 2022
publication

Phages and their satellites encode hotspots of antiviral systems

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10 mai 2022
publication

Systematic and quantitative view of the antiviral arsenal of prokaryotes.

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03 févr. 2022
publication

Evolutionary and mechanistic diversity of Type I-F CRISPR-associated transposons.

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01 janv. 2022
publication

Systematic and quantitative view of the antiviral arsenal of prokaryotes

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01 janv. 2021
publication

Prokaryotic viperins produce diverse antiviral molecules.

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10 déc. 2020
publication

Bacterial Retrons Function In Anti-Phage Defense.

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01 févr. 2020
publication

The pan-immune system of bacteria: antiviral defence as a community resource.

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24 janv. 2020
publication

Atypical organizations and epistatic interactions of CRISPRs and cas clusters in genomes and their mobile genetic elements

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13 mai 2019
publication

A matter of background: DNA repair pathways as a possible cause for the sparse distribution of CRISPR-Cas systems in bacteria

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02 juil. 2018
publication

CRISPRCasFinder, an update of CRISRFinder, includes a portable version, enhanced performance and integrates search for Cas proteins

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01 juil. 2018
publication

Viruses cooperate to defeat bacteria.

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12 déc. 2017
publication

Inhibition of NHEJ repair by type II-A CRISPR-Cas systems in bacteria

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