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Trends in Biotechnology|March 14, 2025
Streamlined and efficient genome editing in Cupriavidus necator H16 using an optimised SIBR-Cas systemSimona Della Valle, Enrico Orsi, Sjoerd C A Creutzburg, et al.
The CRISPR Journal|February 11, 2021
A Code of Ethics for Gene Drive ResearchGeorge J Annas, Chase L Beisel, Kendell Clement, et al.
Nature Biotechnology|September 25, 2019
Targeted transcriptional modulation with type I CRISPR-Cas systems in human cellsAdrian Pickar-Oliver, Joshua B Black, Mae M Lewis, et al.
Nature|July 10, 2024
Phage anti-CRISPR control by an RNA- and DNA-binding helix-turn-helix proteinNils Birkholz, Kotaro Kamata, Maximilian Feussner, et al.
Life Sciences|July 12, 2019
CRISPR-Cas9 system: A new-fangled dawn in gene editingDarshana Gupta, Oindrila Bhattacharjee, Drishti Mandal, et al.
Nature|May 6, 2026
RNA-triggered cell killing with CRISPR-Cas12a2Paul Scholz, Jared Thompson, Kadin T Crosby, et al.
Nature|January 7, 2026
RNA-triggered Cas12a3 cleaves tRNA tails to execute bacterial immunityOleg Dmytrenko, Biao Yuan, Kadin T Crosby, et al.
Molecular Cell|November 25, 2022
The miniature CRISPR-Cas12m effector binds DNA to block transcriptionWen Y Wu, Prarthana Mohanraju, Chunyu Liao, et al.
Cell Host & Microbe|May 16, 2024
Type IV-A3 CRISPR-Cas systems drive inter-plasmid conflicts by acquiring spacers in transFabienne Benz, Sarah Camara-Wilpert, Jakob Russel, et al.
Nature Microbiology|July 27, 2023
A predicted CRISPR-mediated symbiosis between uncultivated archaeaSarah P Esser, Janina Rahlff, Weishu Zhao, et al.
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