This product is not tested for the specific application. However, if the phage genome has been integrated into the E. coli genome, researcher could target this phage DNA sequence for integrating a gene. Please note that the process will not work if targeting just independent phage particles.
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| Talla/SKU | Disponibilidad | Precio |
|---|---|---|
1 ea | Comprobar disponibilidad del carrito | MXP 6,435.00 |
Acerca de este artículo
Promoter activity: inducible
form
liquid
packaging
vial of 50 μL
concentration
20 ng/μL in TE buffer; DNA (1μg of purified plasmid DNA)
technique(s)
microbiological culture: suitable
application(s)
CRISPR
genome editing
promoter
Promoter name: AraBAD
Promoter activity: inducible
shipped in
dry ice
storage temp.
−20°C
General description
Here we present a novel dual-vector CRISPR/Cas-mediated λ-Red system for improved recombineering in E. coli. Our system is shown to facilitate homology-directed repair of DSBs created by Cas9 endonuclease, enabling genetic alterations through chromosomal integration of a donor DNA.
This plasmid is to be used in combination with a custom gRNA (CRISPRBACD) which can be designed and ordered through our Custom gRNA Design Tool. The donor can be either ssDNA or dsDNA with homology arms of 45-59 or 150-500 nucleotides respectively. Protocols for donor design can be found in the technical bulletin.
The Cas9 Lambda Red Homologous Recombination Plasmid for E. coli (CAS9BAC1P) contains the gene for Cas9 from Streptococcus pyogenes (spCas9) expressed from its native promoter, as well as the genes for λ-red recombinases exo, beta, and gam under the control of the arabinose-inducible ParaB promoter. This plasmid confers kanamycin resistance and possesses the repA101ts temperature-sensitive origin of replication, allowing for easy plasmid maintenance and curing.
Application
- HR-mediated recombineering for mutation or SNP analysis
- Creation of HR-mediated knock-in cell lines with promoters, fusion tags, or reporters integrated into endogenous genes
- Creation of gene knockouts in E. coli cell lines
Strain Optimization
Biochem/physiol Actions
Features and Benefits
Markerless: does not require antibiotic resistance marker insertion
Scarless: no scar sequences from marker excision which often cause off-target recombination
Multiplexing: multiple custom gRNA sequences can be used at a time
Legal Information
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Este artículo | |||
|---|---|---|---|
| description - | description - | description - | description - |
| promoter Promoter name: AraBAD | promoter
| promoter
| promoter - |
| form liquid | form liquid | form liquid | form - |
| technique(s) microbiological culture: suitable | technique(s) microbiological culture: suitable | technique(s) microbiological culture: suitable | technique(s) - |
| shipped in dry ice | shipped in dry ice | shipped in dry ice | shipped in dry ice |
| storage temp. −20°C | storage temp. −20°C | storage temp. −20°C | storage temp. −70°C |
| packaging vial of 50 μL | packaging vial of 50 μL | packaging vial of 50 μL | packaging vial of 200 μL |
Clase de almacenamiento
12 - Non Combustible Liquids
wgk
WGK 2
flash_point_f
Not applicable
flash_point_c
Not applicable
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Can i use this system for integrating a gene into an E. coli Phage genome like T4 or T7?
1 answer-
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I need to delete a gene in 2 different types of E. coli. Can I do it by multiplex primer design ?
1 answer-
In theory, this process is possible. However, it would be best to do one mutation at a time due to the screening challenges for multiple mutations.
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Is there a restriction site on the plasmid for linearization? I want to check the presence on the gel.
1 answer-
As shown in the plasmid image located on the Product Detail Page, it does not have a restriction site.
Helpful?
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What gene is responsible for the KanR in the CAS9BAC1P (Cas9 Lambda Red Homologous Recombination Plasmid)?
1 answer-
The gene responsible for the KanR in CAS9BAC1P is Serratia marcescens.
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