Xrcc5 Mouse shRNA Plasmid (Locus ID 22596)
CAT#: TL502435
Xrcc5 - Mouse, 4 unique 29mer shRNA constructs in lentiviral GFP vector, 5µg of each construct provided
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CNY 5,740.00
货期*
现货
规格
Cited in 1 publication. |
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经常一起买 (3)
Specifications
Product Data | |
Product Name | Xrcc5 Mouse shRNA Plasmid (Locus ID 22596) |
Locus ID | 22596 |
UniProt ID | P27641 |
Synonyms | AI314015; CTC85; CTCBF; Ku80; Ku86 |
Vector | pGFP-C-shLenti |
Format | Lentiviral plasmids |
Kit Components | Xrcc5 - Mouse, 4 unique 29mer shRNA constructs in lentiviral GFP vector(Gene ID = 22596). 5µg purified plasmid DNA per construct29-mer scrambled shRNA cassette in pGFP-C-shLenti Vector, TR30021, included for free. |
RefSeq | BC051660, NM_009533, NM_001357519, NM_001357520, NM_009533.1, NM_009533.2, BC029218 |
Summary | Single-stranded DNA-dependent ATP-dependent helicase. Has a role in chromosome translocation. The DNA helicase II complex binds preferentially to fork-like ends of double-stranded DNA in a cell cycle-dependent manner. It works in the 3'-5' direction. Binding to DNA may be mediated by XRCC6. Involved in DNA non-homologous end joining (NHEJ) required for double-strand break repair and V(D)J recombination. The XRCC5/6 dimer acts as regulatory subunit of the DNA-dependent protein kinase complex DNA-PK by increasing the affinity of the catalytic subunit PRKDC to DNA by 100-fold. The XRCC5/6 dimer is probably involved in stabilizing broken DNA ends and bringing them together. The assembly of the DNA-PK complex to DNA ends is required for the NHEJ ligation step. In association with NAA15, the XRCC5/6 dimer binds to the osteocalcin promoter and activates osteocalcin expression. The XRCC5/6 dimer probably also acts as a 5'-deoxyribose-5-phosphate lyase (5'-dRP lyase), by catalyzing the beta-elimination of the 5' deoxyribose-5-phosphate at an abasic site near double-strand breaks. XRCC5 probably acts as the catalytic subunit of 5'-dRP activity, and allows to 'clean' the termini of abasic sites, a class of nucleotide damage commonly associated with strand breaks, before such broken ends can be joined. The XRCC5/6 dimer together with APEX1 acts as a negative regulator of transcription. Plays a role in the regulation of DNA virus-mediated innate immune response by assembling into the HDP-RNP complex, a complex that serves as a platform for IRF3 phosphorylation and subsequent innate immune response activation through the cGAS-STING pathway.[UniProtKB/Swiss-Prot Function] |
shRNA Design | These shRNA constructs were designed against multiple splice variants at this gene locus. To be certain that your variant of interest is targeted, please contact techsupport@origene.com. If you need a special design or shRNA sequence, please utilize our custom shRNA service. |
Performance Guaranteed | OriGene guarantees that the sequences in the shRNA expression cassettes are verified to correspond to the target gene with 100% identity. One of the four constructs at minimum are guaranteed to produce 70% or more gene expression knock-down provided a minimum transfection efficiency of 80% is achieved. Western Blot data is recommended over qPCR to evaluate the silencing effect of the shRNA constructs 72 hrs post transfection. To properly assess knockdown, the gene expression level from the included scramble control vector must be used in comparison with the target-specific shRNA transfected samples. For non-conforming shRNA, requests for replacement product must be made within ninety (90) days from the date of delivery of the shRNA kit. To arrange for a free replacement with newly designed constructs, please contact Technical Services at techsupport@origene.com. Please provide your data indicating the transfection efficiency and measurement of gene expression knockdown compared to the scrambled shRNA control (Western Blot data preferred). |
Citations (1)
The use of this RNAi has been cited in the following citations: |
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Rad52 competes with Ku70/Ku86 for binding to S-region DSB ends to modulate antibody class-switch DNA recombination
,Zan, H;Tat, C;Qiu, Z;Taylor, JR;Guerrero, JA;Shen, T;Casali, P;,
Nat Commun
,PubMed ID 28176781
[XRCC5]
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