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4. A catalogue of biochemically diverse CRISPR-Cas9 orthologs. Gasiunas G; Young JK; Karvelis T; Kazlauskas D; Urbaitis T; Jasnauskaite M; Grusyte MM; Paulraj S; Wang PH; Hou Z; Dooley SK; Cigan M; Alarcon C; Chilcoat ND; Bigelyte G; Curcuru JL; Mabuchi M; Sun Z; Fuchs RT; Schildkraut E; Weigele PR; Jack WE; Robb GB; Venclovas Č; Siksnys V Nat Commun; 2020 Nov; 11(1):5512. PubMed ID: 33139742 [TBL] [Abstract][Full Text] [Related]
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9. Expanding the Genome-Editing Toolbox with Nakamura A; Yamamoto H; Yano T; Hasegawa R; Makino Y; Mitsuda N; Terakawa T; Ito S; Sugano SS CRISPR J; 2024 Aug; 7(4):197-209. PubMed ID: 39111827 [TBL] [Abstract][Full Text] [Related]
10. Developing Heritable Mutations in Arabidopsis thaliana Using a Modified CRISPR/Cas9 Toolkit Comprising PAM-Altered Cas9 Variants and gRNAs. Yamamoto A; Ishida T; Yoshimura M; Kimura Y; Sawa S Plant Cell Physiol; 2019 Oct; 60(10):2255-2262. PubMed ID: 31198958 [TBL] [Abstract][Full Text] [Related]
11. Direct observation of DNA target searching and cleavage by CRISPR-Cas12a. Jeon Y; Choi YH; Jang Y; Yu J; Goo J; Lee G; Jeong YK; Lee SH; Kim IS; Kim JS; Jeong C; Lee S; Bae S Nat Commun; 2018 Jul; 9(1):2777. PubMed ID: 30018371 [TBL] [Abstract][Full Text] [Related]
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13. CRISPR technologies and the search for the PAM-free nuclease. Collias D; Beisel CL Nat Commun; 2021 Jan; 12(1):555. PubMed ID: 33483498 [TBL] [Abstract][Full Text] [Related]
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