NSD1 Knockout cell line (HCT 116)
Catalog Number: KO03393
Price: Online Inquiry
                        Catalog Number: KO03393
Price: Online Inquiry
| Product Information | |
|---|---|
| Product Name | NSD1 Knockout cell line (HCT 116) | 
| specification | 1*10^6 | 
| Storage and transportation | Dry ice preservation/T25 live cell transportation. | 
| Cell morphology | Epithelioid, adherent cell | 
| Passage ratio | 1:2~1:4 | 
| species | Human | 
| Gene | NSD1 | 
| Gene ID | 64324 | 
| Build method | Electric rotation method / virus method | 
| Mycoplasma testing | Negative | 
| Cultivation system | 90%McCOYs 5A+10% FBS | 
| Parental Cell Line | HCT 116 | 
| Quality Control | Genotype: NSD1 Knockout cell line (HCT 116) >95% viability before freezing. All cells were tested and found to be free of bacterial, viruses,mycoplasma and other toxins. | 
| Gene Information | |
|---|---|
| Gene Official Full Name | nuclear receptor binding SET domain protein 1provided by HGNC | 
| Also known as | STO; KMT3B; SOTOS; ARA267; SOTOS1 | 
| Gene Description | This gene encodes a protein containing a SET domain, 2 LXXLL motifs, 3 nuclear translocation signals (NLSs), 4 plant homeodomain (PHD) finger regions, and a proline-rich region. The encoded protein enhances androgen receptor (AR) transactivation, and this enhancement can be increased further in the presence of other androgen receptor associated coregulators. This protein may act as a nucleus-localized, basic transcriptional factor and also as a bifunctional transcriptional regulator. Mutations of this gene have been associated with Sotos syndrome and Weaver syndrome. One version of childhood acute myeloid leukemia is the result of a cryptic translocation with the breakpoints occurring within nuclear receptor-binding Su-var, enhancer of zeste, and trithorax domain protein 1 on chromosome 5 and nucleoporin, 98-kd on chromosome 11. Multiple transcript variants encoding distinct isoforms have been identified for this gene. [provided by RefSeq, Sep 2018] | 
| Expression | Ubiquitous expression in testis (RPKM 4.4), thyroid (RPKM 4.3) and 25 other tissues See more | 
We develop gene knockout solutions tailored to customer requirements and the condition of the target gene.
						    			Cas9 Protein
						    			Cas9 mRNA sgRNA
						    			Cas9 Plasmid
						    			Cas9 Virus
						    	A – Exon KO
gRNAs are designed in the introns flanking the exon, targeting non-multiple-of-3 base deletions in the exon, resulting in frameshift mutations.
B - Frameshift KO
gRNAs are designed within the exon, creating non-multiple-of-3 base deletions to induce frameshift mutations.
C - Complete KO
The entire gene coding sequence is deleted, achieving large-scale knockout effects.
						    	
						    		KO Strategy Design
						    		CRISPR Plasmid/Lentiviral Vector Construction
						    		Lentiviral Packaging
						    		Cell Transfection/Lentiviral Infection
						    		Drug Selection
						    		Cell Cryopreservation
						    		Quality Control
						    		Sequencing Validation
						    		Monoclonal Cell Line Generation
						    		Pool Efficiency Validation
Please note that all services are for research use only. Not intended for any clinical use.
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