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Human XLF Knockdown Cell Line-HeLa

For research use only. Not intended for any clinical use.

Cat. No. :   CSC-RK0020

Host Cell :   HeLa Validation :   Real-Time RCR

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Cell Line Information

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Gene Information

Cat. No. CSC-RK0020
Background Double-strand breaks in DNA result from genotoxic stresses and are among the most damaging of DNA lesions. This gene encodes a DNA repair factor essential for the nonhomologous end-joining pathway, which preferentially mediates repair of double-stranded breaks. Mutations in this gene cause different kinds of severe combined immunodeficiency disorders.
Target Gene NHEJ1
Abbr HeLa-HuXLF Knockdown
Alias NHEJ1, Cernunnos, FLJ12610, XLF
Host Cell HeLa
Host Cell Species Homo sapiens (Human)
Applications

(1) Studying gene functions

(2) Studying gene interactions and signaling pathways

(3) Target validation and drug discovery

(4) Designing diseases models

Morphology Epithelial
Size >1 × 106 cells / vial
Stability Validated for at least 10 passages
Validation Real-Time RCR
Shipping Dry ice
Mycoplasma Negative
Format One frozen vial containing millions of cells
Storage Liquid nitrogen
Safety Considerations The following safety precautions should be observed.
1. Use pipette aids to prevent ingestion and keep aerosols down to a minimum.
2. No eating, drinking or smoking while handling the stable line.
3. Wash hands after handling the stable line and before leaving the lab.
4. Decontaminate work surface with disinfectant or 70% ethanol before and after working with stable cells.
5. All waste should be considered hazardous.
6. Dispose of all liquid waste after each experiment and treat with bleach.
Ship Dry ice
Gene Name NHEJ1 nonhomologous end-joining factor 1 [ Homo sapiens ]
Gene Symbol NHEJ1
Synonyms XLF
Gene ID 79840
Uni Prot ID Q9H9Q4
m RNA Refseq NM_024782.2
Protein Refseq NP_079058.1
Chromosome Location 2q35
Function DNA binding; protein binding;
Pathway Non-homologous end joining, organism-specific biosystem; Non-homologous end-joining, organism-specific biosystem; Non-homologous end-joining, conserved biosystem;
MIM 611290
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