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PUBMED FOR HANDHELDS

Journal Abstract Search


397 related items for PubMed ID: 31980609

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  • 2. Highly specific epigenome editing by CRISPR-Cas9 repressors for silencing of distal regulatory elements.
    Thakore PI, D'Ippolito AM, Song L, Safi A, Shivakumar NK, Kabadi AM, Reddy TE, Crawford GE, Gersbach CA.
    Nat Methods; 2015 Dec; 12(12):1143-9. PubMed ID: 26501517
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  • 11. CRISPR/Cas9-Mediated Genome Editing in Epstein-Barr Virus-Transformed Lymphoblastoid B-Cell Lines.
    Jiang S, Wang LW, Walsh MJ, Trudeau SJ, Gerdt C, Zhao B, Gewurz BE.
    Curr Protoc Mol Biol; 2018 Jan 16; 121():31.12.1-31.12.23. PubMed ID: 29337376
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  • 14. RNAi-mediated control of CRISPR functions.
    Huang X, Chen Z, Liu Y.
    Theranostics; 2020 Jan 16; 10(15):6661-6673. PubMed ID: 32550896
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  • 15. A Compact, High-Accuracy Cas9 with a Dinucleotide PAM for In Vivo Genome Editing.
    Edraki A, Mir A, Ibraheim R, Gainetdinov I, Yoon Y, Song CQ, Cao Y, Gallant J, Xue W, Rivera-Pérez JA, Sontheimer EJ.
    Mol Cell; 2019 Feb 21; 73(4):714-726.e4. PubMed ID: 30581144
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  • 16. A Cellular Stress Response Induced by the CRISPR-dCas9 Activation System Is Not Heritable Through Cell Divisions.
    Johnston AD, Abdulrazak A, Sato H, Maqbool SB, Suzuki M, Greally JM, Simões-Pires CA.
    CRISPR J; 2020 Jun 21; 3(3):188-197. PubMed ID: 33560917
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  • 17. Epigenome editing of the CFTR-locus for treatment of cystic fibrosis.
    Kabadi AM, Machlin L, Dalal N, Lee RE, McDowell I, Shah NN, Drowley L, Randell SH, Reddy TE.
    J Cyst Fibros; 2022 Jan 21; 21(1):164-171. PubMed ID: 34049825
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