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OGS1498

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PSF-CMV-PURO-NH2-GAUS - GAUSSIA (LUCIFERASE) SECRETION PLASMID

plasmid vector for molecular cloning

Synonyme(s) :

cloning vector, expression vector, molecular cloning vector, plasmid, plasmid vector, snapfast vector, vector

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About This Item

Code UNSPSC :
12352200
Nomenclature NACRES :
NA.85

Forme

buffered aqueous solution

Poids mol.

size 6194 bp

Sélection de bactéries

kanamycin

Sélection de cellules de mammifère

puromycin

Origine de la réplication

pUC (500 copies)

Clivage des peptides

no cleavage

Localisation du marqueur peptidique

N-terminal

Promoteur

Promoter name: CMV
Promoter activity: constitutive
Promoter type: mammalian

Gène reporter

none

Signal de sécrétion

gaussia

Conditions d'expédition

ambient

Température de stockage

−20°C

Description générale

PSF-CMV-PURO-NH2-GAUS - GAUSSIA (LUCIFERASE) SECRETION PLASMID is designed to express tagged proteins in mammalian cells either by transient transfection or by creating stable cell lines. It contains a puromycin resistance expression cassette using the human Ubiquitin promoter to drive expression and allow for the selection of cells containing the plasmid.

About the Peptide Tag:This plasmid vector contains an Gaussia luciferase (Gaus) secretory signal peptide (SP) to allow proteins to be exported from the cytosol. During translocation from the cytosol the signal peptide is removed from the protein by endogenous proteases.

Promoter Expression Level: This molecular cloning vector contains the mammalian CMV promoter to drive gene expression. We have tested all of our mammalian promoters in a range of cell types and CMV is consistently the strongest in those we have studied. However there are many reports of the CMV promoter demonstrating silencing by methylation in long-term culture.

Séquence

Please select the file type you require. For reference most cloning programs will import a .gb (Genbank) file and will show all of the plasmids features automatically when downloaded and imported.

Genebank Vector Sequence File

FASTA Vector Sequence File

Full Plasmid Map

Remarque sur l'analyse

To view the Certificate of Analysis for this product, please visit www.oxfordgenetics.com.

Autres remarques

Looking for more vector options to move your experiments forward faster? Consider a custom cloning vector designed and built by Oxford Genetics. Find out more at Oxford Genetics - Sigma's partner for cloning and expression vectors for molecular biology and synthetic biology applications.

Informations légales

Oxford Genetics is a trademark of Oxford Genetics Ltd

Produit(s) apparenté(s)

Réf. du produit
Description
Tarif

Code de la classe de stockage

12 - Non Combustible Liquids

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable


Certificats d'analyse (COA)

Recherchez un Certificats d'analyse (COA) en saisissant le numéro de lot du produit. Les numéros de lot figurent sur l'étiquette du produit après les mots "Lot" ou "Batch".

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Consulter la Bibliothèque de documents

Alexander C Cerny et al.
PLoS genetics, 11(10), e1005578-e1005578 (2015-10-29)
Recycling of signaling proteins is a common phenomenon in diverse signaling pathways. In photoreceptors of Drosophila, light absorption by rhodopsin triggers a phospholipase Cβ-mediated opening of the ion channels transient receptor potential (TRP) and TRP-like (TRPL) and generates the visual
Geoffrey M Lynn et al.
Nature biotechnology, 33(11), 1201-1210 (2015-10-27)
The efficacy of vaccine adjuvants such as Toll-like receptor agonists (TLRa) can be improved through formulation and delivery approaches. Here, we attached small molecule TLR-7/8a to polymer scaffolds (polymer-TLR-7/8a) and evaluated how different physicochemical properties of the TLR-7/8a and polymer
Diana Romero et al.
Carcinogenesis, 37(1), 18-29 (2015-10-28)
Dickkopf-3 (Dkk-3) is a secreted protein whose expression is downregulated in many types of cancer. Endogenous Dkk-3 is required for formation of acini in 3D cultures of prostate epithelial cells, where it inhibits transforming growth factor (TGF)-β/Smad signaling. Here, we
Jin-Gyoung Jung et al.
PLoS genetics, 10(10), e1004751-e1004751 (2014-10-31)
The Notch3 signaling pathway is thought to play a critical role in cancer development, as evidenced by the Notch3 amplification and rearrangement observed in human cancers. However, the molecular mechanism by which Notch3 signaling contributes to tumorigenesis is largely unknown.

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