PTEN Human Gene Knockout Kit (CRISPR)

CAT#: KN202627LP

PTEN - human gene knockout kit via CRISPR, HDR mediated




 HDR-mediated knockout kit validation

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CNY 12,260.00


货期*
6周

规格
    • 1 kit

Product images

经常一起买 (3)
pCAS-Scramble, pCas-Guide vector with a scrambled sequence as a negative control (10 µg)
    • 10 ug

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PTEN Rabbit polyclonal Antibody
    • 100 ul

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PTEN (Myc-DDK-tagged)-Human phosphatase and tensin homolog (PTEN)
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Specifications

Product Data
Format 2 gRNA vectors, 1 Luciferase-Puro donor, 1 scramble control
Donor DNA Luciferase-Puro
Symbol PTEN
Locus ID 5728
Kit Components

KN202627G1, PTEN gRNA vector 1 in pCas-Guide CRISPR vector

KN202627G2, PTEN gRNA vector 2 in pCas-Guide CRISPR vector

KN202627LP-D, donor DNA containing left and right homologous arms and Luciferase-Puro functional cassette.

GE100003, scramble sequence in pCas-Guide vector

Disclaimer These products are manufactured and supplied by OriGene under license from ERS. The kit is designed based on the best knowledge of CRISPR technology. The system has been functionally validated for knocking-in the cassette downstream the native promoter. The efficiency of the knock-out varies due to the nature of the biology and the complexity of the experimental process.
Reference Data
RefSeq NM_000314, NM_001304717, NM_001304718
Synonyms 10q23del; BZS; CWS1; DEC; GLM2; MHAM; MMAC1; PTEN1; TEP1
Summary This gene was identified as a tumor suppressor that is mutated in a large number of cancers at high frequency. The protein encoded by this gene is a phosphatidylinositol-3,4,5-trisphosphate 3-phosphatase. It contains a tensin like domain as well as a catalytic domain similar to that of the dual specificity protein tyrosine phosphatases. Unlike most of the protein tyrosine phosphatases, this protein preferentially dephosphorylates phosphoinositide substrates. It negatively regulates intracellular levels of phosphatidylinositol-3,4,5-trisphosphate in cells and functions as a tumor suppressor by negatively regulating AKT/PKB signaling pathway. The use of a non-canonical (CUG) upstream initiation site produces a longer isoform that initiates translation with a leucine, and is thought to be preferentially associated with the mitochondrial inner membrane. This longer isoform may help regulate energy metabolism in the mitochondria. A pseudogene of this gene is found on chromosome 9. Alternative splicing and the use of multiple translation start codons results in multiple transcript variants encoding different isoforms. [provided by RefSeq, Feb 2015]
*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

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