Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
Cat. No. : SKO0636
| Cat. No. | SKO0636 |
| Description | Creative Biogene develops and optimizes genome editing technology to produce stable genome edited mammalian cell lines serving a wide-range of R&D activities in areas of basic research, diagnostic and therapeutic development. Our premade SuperKO sgRNA vectors are tailor-made to target many different genes respectively. We have successfully constructed a series of knockout cell lines using those sgRNAs. |
| Gene Abbr | NOTCH2 |
| Reporter | mCherry |
| Promoter | U6 |
| Resistance | Amp |
| Selection | Ampicillin |
| Vector Type | Lentiviral Expression |
| Vector Length | 7677 bp |
|
| Target Gene | NOTCH2 |
| Background | This gene encodes a member of the Notch family. Members of this Type 1 transmembrane protein family share structural characteristics including an extracellular domain consisting of multiple epidermal growth factor-like (EGF) repeats, and an intracellular domain consisting of multiple, different domain types. Notch family members play a role in a variety of developmental processes by controlling cell fate decisions. The Notch signaling network is an evolutionarily conserved intercellular signaling pathway which regulates interactions between physically adjacent cells. In Drosophilia, notch interaction with its cell-bound ligands (delta, serrate) establishes an intercellular signaling pathway that plays a key role in development. Homologues of the notch-ligands have also been identified in human, but precise interactions between these ligands and the human notch homologues remain to be determined. This protein is cleaved in the trans-Golgi network, and presented on the cell surface as a heterodimer. This protein functions as a receptor for membrane bound ligands, and may play a role in vascular, renal and hepatic development. Two transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Jan 2011] |
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