The Double Nickase Plasmid features a U6 promoter for sgRNA expression, a 20 nt targeting sequence, and a gRNA scaffold to guide Cas9n. It includes a CBh promoter for Cas9n (D10A) and puromycin resistance, GFP for transfection verification, and nuclear localization signals (NLS). The 2A peptide allows co-expression of Cas9n and Puro from a single promoter, enabling precise genome editing with reduced off-target effects.
The Double Nickase Plasmid features a U6 promoter for sgRNA expression, a 20 nt targeting sequence, and a gRNA scaffold to guide Cas9n. It includes a CBh promoter for Cas9n (D10A) and puromycin resistance, GFP for transfection verification, and nuclear localization signals (NLS). The 2A peptide allows co-expression of Cas9n and Puro from a single promoter, enabling precise genome editing with reduced off-target effects.
Cas9n Nickase gRNA Plasmid Targeting: Dual gRNA plasmids create single-strand nicks at precise DNA sequences for efficient genome editing using Cas9n Nickase.
This image illustrates the Cas9n Nickase mechanism used for precise genome editing. Two plasmids (Plasmid 1 and Plasmid 2) are shown, each containing a targeted DNA sequence. The system utilizes single-guide RNAs (sgRNA) to direct Cas9n Nickase to specific genomic locations, represented by the blue and pink DNA strands. The sgRNA scaffold aids in guiding Cas9n to the 20 nucleotide (nt) target sequence on the DNA. Cas9n makes single-strand cuts at NCC and NGG sites, enabling precise gene modifications without creating double-strand breaks.
The Double Nickase Plasmid features a U6 promoter for sgRNA expression, a 20 nt targeting sequence, and a gRNA scaffold to guide Cas9n. It includes a CBh promoter for Cas9n (D10A) and puromycin resistance, GFP for transfection verification, and nuclear localization signals (NLS). The 2A peptide allows co-expression of Cas9n and Puro from a single promoter, enabling precise genome editing with reduced off-target effects.
20 µg de plásmido de ADN purificado listo para la trasfección; suficiente para 20 transfecciones máximo
El Plásmido Double Nickase (h)Blr1 consisten en un par de plásmidos cada uno codificando una nucleasa Cas9 mutada D10A y una guia de ARN de 20 nucleótidos (gRNA) diseñados para una mayor especificidad que el homologo CRISPR/Cas9 KO
Las secuencias de gRNA tienen una diferencia de unas 20 pb para permitir un corte doble mediado por Cas9 en el ADN que imita el doble corte
Uno de los plásmidos contiene el gen de resistencia a puromicina para la selección y el otro el marcado GFP para confirmar visualmente la transfección
El plásmido de doble nickasa Blr1 (h) y el plásmido de doble nickasa Blr1 (h2) codifican diseños distintos de pares de gRNA dirigidos a CXCR5. Puede que esté disponible uno o ambos diseños
Tras la transfección, la eficacia del knockout puede comprobarse mediante WB, IF ó IHC utilzando el anticuerpo: Blr1 Anticuerpo (C-3): sc-373775