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Current Biology : CB|September 13, 2022
Bacterial immunity: Mobile genetic elements are hotspots for defence systemsAnne Chevallereau, Edze R WestraJournal of Molecular Biology|January 23, 2023
Ecology and evolution of phages encoding anti-CRISPR proteinsBenoît J Pons, Stineke van Houte, Edze R Westra, et al.Nature Reviews. Microbiology|August 10, 2021
Interactions between bacterial and phage communities in natural environmentsAnne Chevallereau, Benoît J Pons, Stineke van Houte, et al.Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|March 26, 2019
The effect of bacterial mutation rate on the evolution of CRISPR-Cas adaptive immunityAnne Chevallereau, Sean Meaden, Stineke van Houte, et al.Cell|July 24, 2018
Anti-CRISPR Phages Cooperate to Overcome CRISPR-Cas ImmunityMariann Landsberger, Sylvain Gandon, Sean Meaden, et al.Cell Host & Microbe|January 6, 2020
Exploitation of the Cooperative Behaviors of Anti-CRISPR PhagesAnne Chevallereau, Sean Meaden, Olivier Fradet, et al.RNA Biology|February 7, 2019
CRISPR evolution and bacteriophage persistence in the context of population bottlenecksJack Common, Edze R WestraProceedings of the National Academy of Sciences of the United States of America|October 30, 2020
It is unclear how important CRISPR-Cas systems are for protecting natural populations of bacteria against infections by mobile genetic elementsEdze R Westra, Bruce R LevinCurrent Biology : CB|September 25, 2019
Transposition: A CRISPR Way to Get AroundTatiana Dimitriu, Ben Ashby, Edze R WestraMolecular Microbiology|July 19, 2012
The rise and fall of CRISPRs--dynamics of spacer acquisition and lossEdze R Westra, Stan J J BrounsPageof 9