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Proceedings of the National Academy of Sciences of the United States of America|June 10, 2014
Direct observation of R-loop formation by single RNA-guided Cas9 and Cascade effector complexesMark D Szczelkun, Maria S Tikhomirova, Tomas Sinkunas, et al.
The CRISPR Journal|June 21, 2021
Diversification of the CRISPR Toolbox: Applications of CRISPR-Cas Systems Beyond Genome EditingSarah Balderston, Gabrielle Clouse, Juan-José Ripoll, et al.
Nucleic Acids Research|June 5, 2020
5' modifications to CRISPR-Cas9 gRNA can change the dynamics and size of R-loops and inhibit DNA cleavageGrace Mullally, Kara van Aelst, Mohsin M Naqvi, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|December 15, 2015
Streptococcus thermophilus CRISPR-Cas9 Systems Enable Specific Editing of the Human GenomeMaximilian Müller, Ciaran M Lee, Giedrius Gasiunas, et al.
The CRISPR Journal|May 21, 2026
A Potent CRISPR-Cas12l Double-Strand Break Gene EditorTomas Urbaitis, Laima Trinkuniene, Ieva Lenkaite, et al.
EMBO Reports|October 21, 2022
A new family of CRISPR-type V nucleases with C-rich PAM recognitionTomas Urbaitis, Giedrius Gasiunas, Joshua K Young, et al.
Nature Biomedical Engineering|April 6, 2021
Discrimination of single-point mutations in unamplified genomic DNA via Cas9 immobilized on a graphene field-effect transistorSarah Balderston, Jeffrey J Taulbee, Elizabeth Celaya, et al.
Nature Communications|November 3, 2020
A catalogue of biochemically diverse CRISPR-Cas9 orthologsGiedrius Gasiunas, Joshua K Young, Tautvydas Karvelis, et al.
Molecular Therapy. Nucleic Acids|November 30, 2023
Progress and harmonization of gene editing to treat human diseases: Proceeding of COST Action CA21113 GenE-HumDiAlessia Cavazza, Ayal Hendel, Rasmus O Bak, et al.
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