VAMP2 Knockout cell line (THP-1)
Catalog Number: KO00045
Price: Online Inquiry
Catalog Number: KO00045
Price: Online Inquiry
Product Information | |
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Product Name | VAMP2 Knockout cell line (THP-1) |
specification | 1*10^6 |
Storage and transportation | Dry ice preservation/T25 live cell transportation. |
Cell morphology | Monocytes, suspended growth |
Passage ratio | 1:2-1:4 |
species | Human |
Gene | VAMP2 |
Gene ID | 6844 |
Build method | Electric rotation method / virus method |
Mycoplasma testing | Negative |
Cultivation system | 90%RPMI-1640+10%FBS |
Parental Cell Line | THP-1 |
Quality Control | Genotype: VAMP2 Knockout cell line (THP-1) >95% viability before freezing. All cells were tested and found to be free of bacterial, viruses,mycoplasma and other toxins. |
Gene Information | |
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Gene Official Full Name | vesicle associated membrane protein 2provided by HGNC |
Also known as | SYB2; VAMP-2; NEDHAHM |
Gene Description | The protein encoded by this gene is a member of the vesicle-associated membrane protein (VAMP)/synaptobrevin family. Synaptobrevins/VAMPs, syntaxins, and the 25-kD synaptosomal-associated protein SNAP25 are the main components of a protein complex involved in the docking and/or fusion of synaptic vesicles with the presynaptic membrane. This gene is thought to participate in neurotransmitter release at a step between docking and fusion. The protein forms a stable complex with syntaxin, synaptosomal-associated protein, 25 kD, and synaptotagmin. It also forms a distinct complex with synaptophysin. It is a likely candidate gene for familial infantile myasthenia (FIMG) because of its map location and because it encodes a synaptic vesicle protein of the type that has been implicated in the pathogenesis of FIMG. [provided by RefSeq, Jul 2008] |
Expression | Ubiquitous expression in brain (RPKM 159.3), ovary (RPKM 45.0) and 23 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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CD Biosynsis is a leading customer-focused biotechnology company dedicated to providing high-quality products, comprehensive service packages, and tailored solutions to support and facilitate the applications of synthetic biology in a wide range of areas.