PAPSS1 Protein (Myc-DYKDDDDK Tag)
Quick Overview for PAPSS1 Protein (Myc-DYKDDDDK Tag) (ABIN2728214)
Target
See all PAPSS1 ProteinsProtein Type
Origin
Source
Application
Purity
-
-
Purification tag / Conjugate
- This PAPSS1 protein is labelled with Myc-DYKDDDDK Tag.
-
Characteristics
-
- Recombinant human PAPSS1 protein expressed in HEK293 cells.
- Produced with end-sequenced ORF clone
-
-
Want other Options for this Protein ?
!Discover Our Predefined Custom Proteins and Custom Protein Services!ProductExpression SystemConjugateOriginPrice starts atExpression System HEK-293 CellsConjugate His tagOrigin HumanPrice starts at $12,595.45Expression System Cell-free protein synthesis (CFPS)Conjugate Strep TagOrigin HumanPrice starts at $20,480.57Your project requires further customization? Contact us and discover our custom protein solutions
-
-
-
Application Notes
-
Recombinant human proteins can be used for:
Native antigens for optimized antibody production
Positive controls in ELISA and other antibody assays -
Comment
-
The tag is located at the C-terminal.
-
Restrictions
- For Research Use only
-
-
-
Concentration
- 50 μg/mL
-
Buffer
- 25 mM Tris.HCl, pH 7.3, 100 mM glycine, 10 % glycerol.
-
Storage
- -80 °C
-
Storage Comment
- Store at -80°C. Thaw on ice, aliquot to individual single-use tubes, and then re-freeze immediately. Only 2-3 freeze thaw cycles are recommended.
-
-
- PAPSS1 (3'-phosphoadenosine 5'-phosphosulfate Synthase 1 (PAPSS1))
-
Alternative Name
- Papss1
-
Background
- Three-prime-phosphoadenosine 5-prime-phosphosulfate (PAPS) is the sulfate donor cosubstrate for all sulfotransferase (SULT) enzymes (Xu et al., 2000 [PubMed 10679223]). SULTs catalyze the sulfate conjugation of many endogenous and exogenous compounds, including drugs and other xenobiotics. In humans, PAPS is synthesized from adenosine 5-prime triphosphate (ATP) and inorganic sulfate by 2 isoforms, PAPSS1 and PAPSS2 (MIM 603005).[supplied by OMIM, Mar 2008].
-
Molecular Weight
- 70.7 kDa
-
NCBI Accession
- NP_005434
-
Pathways
- Glycosaminoglycan Metabolic Process, Ribonucleoside Biosynthetic Process
Target
-