Human SVIP cDNA Clone in Mammalian Expression Vector (Myc-DYKDDDDK Tag)
Quick Overview for Human SVIP cDNA Clone in Mammalian Expression Vector (Myc-DYKDDDDK Tag) (ABIN3305669)
Gene
Application
Insert
Vector
Vector Backbone
Promoter
Bacterial Resistance
Expression Type
-
-
Species
- Human
-
Supplier Product No.
- sc316887
-
Supplier
- OriGene
-
Purpose
- Untagged full-length cDNA clone from Human SVIP is ideal for over-expression of native protein for functional studies.
-
Specificity
- With the native stop codon at the end of the ORF the C-terminal Myc-DDK tag in the vector won't be expressed.
-
Characteristics
-
- These cDNA clones are isolated from full-length cDNA libraries and usually contain the coding sequence as well as the untranslated regions (UTRs) of the mRNA transcript appropriate to the library from which they were isolated.
- These cDNA clones are ideal for over-expression of native proteins for functional studies. Provided as 10 μg transfection-ready plasmids.
- Every lot of primer is tested to provide clean sequencing of cDNA clones.
-
Purification
- The DNAs were purified using PowerPrep HP Plasmid isolation kits for transfection ready plasmids.
-
Components
-
- The cDNA clone is shipped in a 2-D bar-coded Matrix tube as dried plasmid DNA.
- The package also includes 100 pmols of both the corresponding 5' and 3' vector primers in separate vials.
-
Selectable Marker
- Neomycin
-
Sequencing Primer
- VP1.5 (forward) 5'GGACTTTCCAAAATGTCG 3', XL39 (reverse) 5'ATTAGGACAAGGCTGGTGGG 3'
-
-
-
-
Restrictions
- For Research Use only
-
-
-
Format
- Lyophilized
-
Storage
- RT,-20 °C
-
Storage Comment
- The lyophilized plasmid is stable for up to one year when stored at ambient temperature. Following dissolution in 100 μL dH2O, store at -20 °C. Lyophilized primers are stable for up to one year when stored at ambient temperature. Following dissolution in 10 μL dH2O, store at -20 °C.
-
Expiry Date
- 12 months
-
-
- SVIP (Small VCP/p97-Interacting Protein (SVIP))
-
Alternative Name
- SVIP
-
Background
- Endoplasmic reticulum-associated degradation (ERAD) is the pathway by which misfolded proteins in the endoplasmic reticulum are targeted to the proteasome for degradation. Multiple specialized proteins interact with one another during ERAD to complete this process. The protein encoded by this gene is an inhibitor of ERAD, functioning to disrupt the interaction of these protein components. This downregulation of ERAD may be needed to protect the cell from overactive protein degradation. Several transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Feb 2016].
-
NCBI Accession
- NM_148893, NP_683691
Target
-