Recombinant Human ST6GALNAC6 Protein, CF
Recombinant Human ST6GALNAC6 Protein, CF Summary
Product Specifications
Asn65-Thr333, with a C-terminal 6-His tag
Analysis
Product Datasheets
Carrier Free
CF stands for Carrier Free (CF). We typically add Bovine Serum Albumin (BSA) as a carrier protein to our recombinant proteins. Adding a carrier protein enhances protein stability, increases shelf-life, and allows the recombinant protein to be stored at a more dilute concentration. The carrier free version does not contain BSA.
In general, we advise purchasing the recombinant protein with BSA for use in cell or tissue culture, or as an ELISA standard. In contrast, the carrier free protein is recommended for applications, in which the presence of BSA could interfere.
7425-GT
Formulation | Supplied as a 0.2 μm filtered solution in Tris and NaCl. |
Shipping | The product is shipped with dry ice or equivalent. Upon receipt, store it immediately at the temperature recommended below. |
Stability & Storage: | Use a manual defrost freezer and avoid repeated freeze-thaw cycles.
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Assay Procedure
- Assay Buffer: 25 mM MES, pH 6.0
- Recombinant Human Sialyltransferase 6/ST6GALNAC6 (rhST6GALNAC6) (Catalog # 7425-GT)
- CMP-Sialic Acid (Sigma, Catalog # C8271), 10 mM stock in deionized water
- Fetuin (Sigma, Catalog # F3385), 50 mg/mL stock in deionized water
- Sialyltransferase Activity Kit (Catalog # EA002)
- 96-well Clear Plate (Costar, Catalog # 92592)
- Plate Reader (Model: SpectraMax Plus by Molecular Devices) or equivalent
- Dilute 1 mM Phosphate Standard by adding 40 µL of the 1 mM Phosphate Standard to 360 µL of Assay Buffer for a 100 µM stock.
- Prepare standard curve by performing six one-half serial dilutions of the 100 µM Phosphate stock in Assay Buffer. The standard curve has a range of 0.078 to 5 nmoles per well.
- Dilute CMP-Sialic Acid to 2.5 mM in Assay Buffer.
- Dilute Coupling Phosphatase 2 to 20 µg/mL in Assay Buffer.
- Prepare reaction mixture by combining 60 µL of 2.5 mM CMP-Sialic Acid, 60 µL of 20 µg/mL Coupling Phosphatase 2, 60 µL of 50 mg/mL Fetuin, and 120 µL of 100 mM MnCl2 (supplied in kit). (Volume is sufficient for 12 wells.)
- Dilute rhST6GALNAC to 5 µg/mL in Assay Buffer.
- Load 50 µL of each dilution of the standard curve into a plate. Include a curve blank containing 50 μL of Assay Buffer.
- Load 25 µL of the 5 µg/mL rhST6GALNAC into the plate. Include a control containing 25 µL of Assay Buffer.
- Add 25 µL of reaction mixture to the wells, excluding the standard curve.
- Cover the plate with a plate sealer and incubate at 37 ºC for 20 minutes.
- Add 30 µL of the Malachite Green Reagent A to all wells. Mix briefly.
- Add 100 µL of deionized water to all wells. Mix briefly.
- Add 30 µL of the Malachite Green Reagent B to all wells. Mix and incubate for 20 minutes at room temperature.
- Read plate at 620 nm (absorbance) in endpoint mode.
- Calculate specific activity:
Specific Activity (pmol/min/µg) = |
Phosphate released* (nmol) x (1000 pmol/nmol) |
Incubation time (min) x amount of enzyme (µg) |
*Derived from the phosphate standard curve using linear or 4-parameter fitting and adjusted for Control.
- rhST6GALNAC: 0.125 μg
- Coupling Phosphatase 2: 0.1 µg
- CMP-Sialic Acid: 250 µM
- Fetuin: 250 µg
- MnCl2: 20 mM
Reconstitution Calculator
Background: ST6 Sialyltransferase 6/ST6GALNAC6
Gangliosides are acidic glycosphingolipids that contain one or more sialic acid residues (1). They are abundant in the nervous system, where they play crucial modulatory roles in cellular recognition, interaction, adhesion, and signal transduction, particularly during early developmental stages. The expression of gangliosides in the nervous system is developmentally regulated by various sialyltransferases (2). ST6GALNAC6 is widely expressed in the nervous tissues and many other mouse tissues such as colon, liver, and heart. It has known activity on gangliosides of GD1a, GT1b and GM1b (3). ST6GALNAC6 is also responsible for the biosynthesis of disialylgalactosylgloboside and disialyl Lewis a, representative tumor-associated antigens in pancreas and colon cancers (4, 5). The recombinant ST6GALNAC6 was active on fetuin from fetal calf serum when assayed using a phosphatase-coupled method (6) suggesting that ST6GALNAC6 is also active on N- or O-glycans.
- Kolter, T. et al. (2002) J. Biol. Chem. 277:25859.
- Harduin-Lepers, A. et al. Glycobiology 15:805.
- Okajima, T. et al. (2000) J. Biol. Chem. 275:6717.
- Senda, M. et al.(2007) Biochem J. 402:459.
- Tsuchida, A. et al. (2003) J. Biol. Chem. 278:22787.
- Wu, Z.L. et al. (2011) Glycobiology 21:727.
Product Specific Notices
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