GAPDH Knockout cell line(A549)

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GAPDH Knockout cell line(A549)

GAPDH Knockout cell line(A549) Order

Catalog#YKO-H498

Price (USD)-

Size 1*10^6

Instruction

Exclusive Red Cotton system(en.rc-crispr.com)was used to design the sgRNA fragment knockout strategy. Two sgRNAs were constructed into CRISPR-U™ plasmid which will be subsequentially transfected into cells by electroporation/virus method. And the single-cell clones were isolated by the limited dilution method and the Monoclone Genotype Validation Kit (Cat: YK-MV-1000) was used for cell lysis and PCR amplification on the single-cell clones, and then the genotype was verified by Sanger sequencing. Upon passing the final validation, the positive clones were expanded and cryopreserved.

Cell Info

Catalog YKO-H498
Cell line GAPDH Knockout cell line(A549) Cell Type Human Lung Cancer Cell Line
Morphology Epithelial-like, adherent Passage ratio 1:3~1:5
Culture method 90% F12K+10% FBS
Cryopreservation solution 50%F12K+40%FBS+10%DMSO
Special Note

STR Validation

Gene Information

Official symbol
GAPDH
Gene id
2597
Official full symbol
glyceraldehyde-3-phosphate dehydrogenase
Also known as
G3PD, GAPD, HEL-S-162eP
This gene encodes a member of the glyceraldehyde-3-phosphate dehydrogenase protein family. The encoded protein has been identified as a moonlighting protein based on its ability to perform mechanistically distinct functions. The product of this gene catalyzes an important energy-yielding step in carbohydrate metabolism, the reversible oxidative phosphorylation of glyceraldehyde-3-phosphate in the presence of inorganic phosphate and nicotinamide adenine dinucleotide (NAD). The encoded protein has additionally been identified to have uracil DNA glycosylase activity in the nucleus. Also, this protein contains a peptide that has antimicrobial activity against E. coli, P. aeruginosa, and C. albicans. Studies of a similar protein in mouse have assigned a variety of additional functions including nitrosylation of nuclear proteins, the regulation of mRNA stability, and acting as a transferrin receptor on the cell surface of macrophage. Many pseudogenes similar to this locus are present in the human genome. Alternative splicing results in multiple transcript variants.

KO strategy

Knockout region: Exon 3 (based on transcript GAPDH-201)
Validation: PCR+Sanger Sequencing

Method

Exclusive Red Cotton system(en.rc-crispr.com)was used to design the sgRNA fragment knockout strategy. Two sgRNAs were constructed into CRISPR-U™ plasmid which will be subsequentially transfected into cells by electroporation/virus method. And the single-cell clones were isolated by the limited dilution method and the Monoclone Genotype Validation Kit (Cat: YK-MV-1000) was used for cell lysis and PCR amplification on the single-cell clones, and then the genotype was verified by Sanger sequencing. Upon passing the final validation, the positive clones were expanded and cryopreserved.

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