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Recombinant S. cerevisiae ATP Sulfurylase/MET3 Protein, CF  20 UG图1

Recombinant S. cerevisiae ATP Sulfurylase/MET3 Protein, CF 20 UG

2024-11-24 19:19IP属地 广东省东莞市 电信00留言

7175-AS

 

Formulation Supplied as a 0.2 μm filtered solution in Tris, NaCl, Glycerol and DTT.





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.      

  • 6 months from date of receipt, -70 °C as supplied.

  • 3 months, -70 °C under sterile conditions after opening.


Assay Procedure

Materials

  1. Dilute ATP to 1.8 mM in Assay Buffer.

  2. Dilute rhPPA1 to 3 µg/mL in Assay Buffer.

  3. Dilute rAPS Kinase to 120 µg/mL in Assay Buffer.

  4. Prepare Reaction Mixture by combining equal volumes of 1.8 mM ATP, 3 µg/mL rhPPA1, and 120 µg/mL rAPS Kinase.

  5. Dilute ryMET3 to 0.2 µg/mL in Assay Buffer.

  6. Dilute 1 M Phosphate Standard by adding 10 µL of the 1 M Phosphate Standard to 990 µL of deionized water for a 10 mM stock. Continue by adding 10 µL of the 10 mM Phosphate stock to 990 µL of Assay Buffer for a 100 µM stock. This is the first point of the standard curve.

  7. Continue 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 5.0 nmol per well.

  8. Load 50 µL of each dilution of the standard curve into a plate. Include a curve blank containing 50 μL of Assay Buffer.

  9. Load 25 µL of the 0.2 µg/mL ryMET3 into the plate. Include a Control containing 25 µL of Assay Buffer.

  10. Start the reaction by adding 25 µL of Reaction Mixture to the wells, excluding the standard curve and curve blank.

  11. Cover the plate with parafilm or a plate sealer and incubate at 37 °C for 20 minutes.

  12. Add 30 µL of the Malachite Green Reagent A to all wells.

  13. Add 100 µL of deionized water to all wells. Mix briefly.

  14. Add 30 µL of the Malachite Green Reagent B to all wells. Mix and incubate for 20 minutes at room temperature.

  15. Read plate at 620 nm (absorbance) in endpoint mode.

  16. Calculate specific activity:

     Specific Activity (pmol/min/µg) =

Phosphate released* (nmol) x (1000 pmol/nmol)÷ 2**
Incubation time (min) x amount of enzyme (µg)

     *Derived from the phosphate standard curve using linear or 4-parameter fitting and adjusted for Control.
     **Two inorganic phosphates are generated from each MET3 produced pyrophosphate

Per Reaction:

Background: ATP-Sulfurylase/MET3

Sulfur metabolism is essential to all organisms. Inorganic sulfate is sequentially activated by ATP Sulfurylase and adenosine 5′-phosphosulfate kinase (APSK). ATP Sulfurylase converts ATP to adenosine-5'-phosphosulfate (APS) and generates pyrophosphate (1). APSK subsequently phosphorylates APS at the 3’ site to generate 3'‑phosphoadenosine-5'-phosphosulfate (PAPS) (2). PAPS is the sulfur donor required for all sulfotransferase reactions in humans and is also the sulfur source for synthesis of cysteine, methionine and glutathione (3). The ATP Sulfurylase reaction is highly unfavorable energetically with the standard free-energy change of approximately +46 kJ/mol (4). To drive the reaction forward, APSK and pyrophosphatase are generally added into the reaction simultaneously to remove the products. The recombinant   S. cerevisiae ATP Sulfurylase can be used for   in vitro PAPS synthesis (5, 6).

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