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From a single-nucleotide substitution to a fluorescent reporter tag – a CRISPR knock-in creates precise desired mutations in the genomic DNA near the site where sequence-specific hybridization of an sgRNA recruits the Cas9 nuclease. The desired sequence is delivered into the cell as an HDR template (either an ssDNA oligonucleotide or a donor plasmid), which allows for homology-directed repair (HDR) to occur after Cas9 has made a double-stranded break in the genomic DNA.

Every CRISPR HDR template consists of the desired mutation or insert sequence flanked by left and right homology arms that correspond to the sequence on either side of the CRISPR-induced double stranded break. For small mutations of <50 bp, we suggest using ssDNA oligonucleotide templates, while larger insertions should be handled with one of our dsDNA donor plasmids. Choose to use our Custom CRISPR HDR templates to achieve precise genomic knock-in using the homology-directed repair pathway.

Applications

  1. In-frame fusion tag
    • Tag your gene of interest with a short peptide sequence
    • For this application, an ssDNA oligonucleotide repair template is recommended
  2. Point mutation
    • Mutate short sequences or residues within your gene of interest
    • For this application, an ssDNA oligonucleotide repair template is recommended
  3. Transgene insertion
    • Insert a larger transgene or reporter into a locus of your choice
    • For this application, a dsDNA vector repair template is recommended

Additional Resources:

“Construct works beautifully, definitely will get more if needed.”

Emily Chen, UCLA, CRISPR Constructs

Additional Resources:

Service Details

ssDNA oligonucleotide service

SERVICE NAME HOMOLOGY ARMS + REPAIR TEMPLATE QUANTITY CAT. NO.
Custom CRISPR Repair Template (<200nt ssDNA oligonucleotide) Homology arms + insert must be less than 200nt total. Suggested homology arm size is 50nt-90nt per arm 4 nmole C427

 

  • Lyophilized oligonucleotide containing your insert with flanking homology arms

dsDNA Vectors with Repair Template

SERVICE NAME REPAIR INSERT QUANTITY CAT. NO.
Custom CRISPR Repair Template (<200nt ssDNA oligonucleotide) Custom insert < 1 kbp 1.0 ug C428
Custom CRISPR Repair Template (< 1.2 kbp arms, 1-2 kbp insert) Custom insert 1-2 kbp 1.0 ug C429
Custom CRISPR Repair Template (< 1.2 kbp arms, SV40-GFP-2A-Puro insert) Predesigned insert with GFP and Puromycin resistance 1.0 ug C430
Custom CRISPR Repair Template (< 1.2 kbp arms, SV40-RFP-2A-Puro insert) Predesigned insert with GFP and Puromycin resistance 1.0 ug C431
  • Plasmid with Homology Arms up to <1.2kb (both left and right arms)
  • dsDNA vector containing an insert with flanking homology arms (total homology arms sequence is < 1.2kb in length)

Plasmid with Homology Arms 1.2-2 kbp (total of both arms)

SERVICE NAME REPAIR INSERT QUANTITY CAT. NO.
Custom CRISPR Repair Template (1.2-2 kbp arms, < 1 kbp insert) Custom insert < 1 kbp 1.0 ug C432
Custom CRISPR Repair Template (1.2-2 kbp arms, 1-2 kbp insert) Custom insert 1-2 kbp 1.0 ug C433
Custom CRISPR Repair Template (1.2-2 kbp arms, SV40-GFP-2A-Puro insert) Predesigned with GFP and Puromycin resistance 1.0 ug C434
Custom CRISPR Repair Template (1.2-2 kbp arms, SV40-RFP-2A-Puro insert) Predesigned with GFP and Puromycin resistance 1.0 ug C435
  • dsDNA vector containing an insert with flanking homology arms (total homology arms sequence is 1.2-2kb in length)

Plasmid with Homology Arms >2 kbp (total of both arms)

SERVICE NAME REPAIR INSERT QUANTITY CAT. NO.
Custom CRISPR Repair Template (>2 kbp arms, any insert size) Custom or predesigned insert 1.0 ug C436
  • dsDNA vector containing an insert with flanking homology arms (total homology arms sequence is 1.2-2kb in length)

Additional Info

Available custom CRISPR Vectors and Viruses:
AAV VECTOR /VIRUS LENTIVECTOR /VIRUS NON-VIRAL VECTOR ADENOVIRUS
sgRNA for spCas9 Available Available Available Available
sgRNA for saCas9 Available
All-in-One with spCas9 Available Available
All-in-One with saCas9 Available
All-in-One with FnCas12a (FnCpf1) Available
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