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human ERCC4 shRNA silencing Adenovirus

Name 
Ad-h-ERCC4-shRNA
Cat No 
shADV-208061
Availability
4-5 weeks

This is an Adenovirus expressing shRNA for silencing of Human ERCC4.

shADV-208061
Ad-h-ERCC4-shRNA

Ready-to-use Adenovirus expressing shRNA for silencing of Human ERCC4 (ERCC excision repair 4, endonuclease catalytic subunit). Available with optional GFP reporter or cell-specific promoter.

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Product Details

Promoter
U6 ()
Reporter
eGFP (default), optional CFP, YFP, RFP, mCherry
shRNA Knockdown (%)
70
shRNA Validated
Yes
Storage Buffer
DMEM, 2% BSA, 2.5% Glycerol
Viral Backbone
Human Adenovirus Type5 (dE1/E3)

Gene Reference Data

Alternate Names
DNA excision repair protein ERCC-4; DNA repair endonuclease XPF; DNA repair protein complementing XP-F cells; ERCC11; excision repair cross-complementation group 4; excision repair cross-complementing rodent repair deficiency, complementation group 4; excision-repair, complementing defective, in Chinese hamster; FANCQ; RAD1; xeroderma pigmentosum group F-complementing protein; xeroderma pigmentosum, complementation group F; XFEPS; XPF
Description (eCommerce)
XPF/ERCC4 is suggested to play a role in the repair of DNA double-strand breaks (DSB), homologous recombination, and gene conversion via single-strand annealing (SSA). XPF/ERCC4 is an endonuclease that incises 5-prime DNA. Defects in XPF/ERCC4 cause xeroderma pigmentosum VI (XP6) an autosomal recessive disease characterized by hypersensitivity to sunlight and a predisposition to skin cancer as well as neurological abnormalities. Defects in XPF/ERCC4 are also responsible for XFE progeroid syndrome, a syndrome characterized by dwarfism, cachexia, and microcephaly.
Description (Vector)
ERCC4 forms a complex with ERCC1 and is involved in the 5' incision made during nucleotide excision repair. This complex is a structure specific DNA repair endonuclease that interacts with EME1. Defects in this gene are a cause of xeroderma pigmentosum complementation group F (XP-F), or xeroderma pigmentosum VI (XP6).
Gene ID
2072
Gene Name (eCommerce)
ERCC excision repair 4, endonuclease catalytic subunit
Gene Name (Vector)
ERCC excision repair 4, endonuclease catalytic subunit
Gene Symbol
ERCC4
HGNC ID
HGNC:3436
NCBI Taxonomy ID (eCommerce)
9606.0
ORF Size (aa)
2751
ORF Size (bp)
2751 bp
Protein Name (eCommerce)
DNA repair endonuclease XPF
RefSeq ID
NM_005236
RefSeq Synonyms
NM_005236, BC160102,
Research Areas
DNA Damage/Repair,Fanconi anemia,Telomeric Maintenance
Research Areas (Faceted)
genetics,transcription_translation,cell_biology
Species
human
Target Sentence
XPF/ERCC4 is suggested to play a role in the repair of DNA double-strand breaks (DSB), homologous recombination, and gene conversion via single-strand annealing (SSA). XPF/ERCC4 is an endonuclease that incises 5-prime DNA. Defects in XPF/ERCC4 cause xeroderma pigmentosum VI (XP6) an autosomal recessive disease characterized by hypersensitivity to sunlight and a predisposition to skin cancer as well as neurological abnormalities. Defects in XPF/ERCC4 are also responsible for XFE progeroid syndrome, a syndrome characterized by dwarfism, cachexia, and microcephaly.
UniGene ID
Hs.567265
UniProt ID (eCommerce)
Q92889

About Storage Conditions

All our viral products should be kept at -80°C. At this temperature, the virus will remain stable for 6-12 months (and in some cases, up to 2 years). Once thawed, the product can be stored at 4°C for 2-3 weeks without significant loss of biological activity. We recommend aliquoting your vectors into low protein binding tubes upon receipt. This helps avoid repeated freeze-thaw cycles, as well as prevent loss of virus. To maintain accurate titer, aliquot in at least 20ul per tube.