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Human SPAST Knockout Cell Line-HEK293T

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

Cat. No. :   CSC-RT3167

Target Gene :   SPAST Host Cell :   HEK293T

Size :   >1x106 cells/vial Validation :   Sequencing

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Cell Line Information

Cell Culture Information

Safety and Packaging

Gene Information

Cat. No. CSC-RT3167
Introduction This cell is a stable cell line with a homozygous knockout of human SPAST using CRISPR/Cas9.
Target Gene SPAST
Host Cell HEK293T
Host Cell Species Homo sapiens (Human)
Size 1 vial (>10^6 cell/vial)
Validation Sequencing
Storage Liquid Nitrogen
Shipping Dry ice package
Revival Rapidly thaw cells in a 37°C water bath. Transfer contents into a tube containing pre-warmed media. Centrifuge cells and seed into a 25 cm2 flask containing pre-warmed media.
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
Target Gene SPAST
Background This gene encodes a member of the AAA (ATPases associated with a variety of cellular activities) protein family. Members of this protein family share an ATPase domain and have roles in diverse cellular processes including membrane trafficking, intracellular motility, organelle biogenesis, protein folding, and proteolysis. The use of alternative translational initiation sites in this gene results in a single transcript variant that can produce isoforms that differ in the length of their N-terminus and which thereby differ in the efficiency of their export from the nucleus to the cytoplasm. In addition, alternative splicing results in multiple transcript variants that encode isoforms that differ in other protein regions as well. One isoform of this gene has been shown to be a microtubule-severing enzyme that regulates microtubule abundance, mobility, and plus-end distribution. Mutations in this gene cause the most frequent form of autosomal dominant spastic paraplegia 4. [provided by RefSeq, May 2018]
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