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dCas9-based epigenome editing suggests acquisition of histone methylation is not sufficient for target gene repression.
O'Geen H, Ren C, Nicolet CM, Perez AA, Halmai J, Le VM, Mackay JP, Farnham PJ, Segal DJ
Nucleic Acids Res. 2017 Sep 29;45(17):9901-9916. doi: 10.1093/nar/gkx578.
PubMed Article

Plasmids from Article

ID Plasmid Purpose
100085dCas9-FOG1[N+C]dCas9 fused to two FOG1 peptide [aa 1-45] , one at the N-terminus and one at the C-terminus of dCas9; pCDNA3 vector backbone, mammalian expression
100086Ezh2[FL]-dCas9Full-length [FL] mouse Ezh2 fused to N-terminus of dCas9; pCDNA3 vector backbone, mammalian expression
100087Ezh2[SET]-dCas9Catalytic domain [SET] of mouse Ezh2 fused to N-terminus of dCas9; pCDNA3 vector backbone, mammalian expression
100088SUV[SET]-dCas9Catalytic domain [SET] of human SUVAR39H1 fused to N-terminus of dCas9; pCDNA3 vector backbone, mammalian expression
100089G9A[SET]-dCas9Catalytic domain [SET] of human G9A fused to N-terminus of dCas9; pCDNA3 vector backbone, mammalian expression
100090DNMT3A-dCas9DNMT3A fused to N-terminus of dCas9; pCDNA3 vector backbone, mammalian expression
100091dCas9 plasmiddCas9 expression plasmid without effector fusions; 3X Flag tag; 2NLS; pCDNA3 vector backbone, mammalian expression
112195KRAB-dCas9KRAB fused to N-terminus of dCas9; pCDNA3 vector backbone, mammalian expression

Antibodies from Article