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Science (New York, N.Y.)|May 30, 2020
A phage-encoded anti-CRISPR enables complete evasion of type VI-A CRISPR-Cas immunityAlexander J Meeske, Ning Jia, Alice K Cassel, et al.
Cell|August 7, 2012
A synthetic biology framework for programming eukaryotic transcription functionsAhmad S Khalil, Timothy K Lu, Caleb J Bashor, et al.
Nature Communications|March 30, 2020
Activation and self-inactivation mechanisms of the cyclic oligoadenylate-dependent CRISPR ribonuclease Csm6Carmela Garcia-Doval, Frank Schwede, Christian Berk, et al.
Cell|October 29, 2024
The CRISPR-associated adenosine deaminase Cad1 converts ATP to ITP to provide antiviral immunityChristian F Baca, Puja Majumder, James H Hickling, et al.
Nature Biotechnology|October 6, 2014
Exploiting CRISPR-Cas nucleases to produce sequence-specific antimicrobialsDavid Bikard, Chad W Euler, Wenyan Jiang, et al.
Nature|July 20, 2017
Type III CRISPR-Cas systems produce cyclic oligoadenylate second messengersOle Niewoehner, Carmela Garcia-Doval, Jakob T Rostøl, et al.
Nature Microbiology|November 25, 2021
Prophage integration into CRISPR loci enables evasion of antiviral immunity in Streptococcus pyogenesAndrew Varble, Edmondo Campisi, Chad W Euler, et al.
Nature|November 15, 2023
Bacterial cGAS senses a viral RNA to initiate immunityDalton V Banh, Cameron G Roberts, Adrian Morales-Amador, et al.
Science (New York, N.Y.)|January 5, 2013
Multiplex genome engineering using CRISPR/Cas systemsLe Cong, F Ann Ran, David Cox, et al.
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