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DNA-Free Thermostable Alkaline Phosphatase catalyzes the hydrolysis of phosphate monoester bonds but does not catalyze the hydrolysis of phosphate diester or phosphate triester bonds. This enzyme is a high-temperature enzyme, exhibiting high activity at 60-100℃ and cannot be inactivated by heat. The specific activity of this enzyme is approximately 20 U/mg.
Cat. No.: DFMAP-500 (for 500U)
Cat. No.: DFMAP-2500 (for 2500U)
Description
DNA-Free Thermostable Alkaline Phosphatase catalyzes the hydrolysis of phosphate monoester bonds but does not catalyze the hydrolysis of phosphate diester or phosphate triester bonds. This enzyme is a high-temperature enzyme, exhibiting high activity at 60-100℃ and cannot be inactivated by heat. The specific activity of this enzyme is approximately 20 U/mg.
Our DNA-Free enzymes are all recombinant proteins and purified through multiple steps, devoid of genomic and plasmid DNA from the production strain.
Unit Definition
One unit is defined as the amount of enzyme required to hydrolyze 1 μmol of p-nitrophenyl phosphate to p-nitrophenol within 1 minute at 75℃ in 1× Alkaline Phosphatase reaction buffer.
Features
- Completely free from bacterial DNA.
- Removal of 5’ phosphate groups from DNA molecules.
- Pre-treatment of PCR products for sequencing when combined with Exonuclease I.
Storage
Store at -20℃ for up to 2 years. Avoid repeated freeze-thaw cycles.
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文献和实验in solution c. for 5-15 minutes at room temperature. Wash, counterstain in haematoxylin, wash. Mount in phosphate buffered glycerine jelly RESULTS Alkaline phosphatase activity - Red Nuclei - Blue
Histochemical staining of sea urchin embryos for alkaline phosphatase (AP) enzyme activity
Histochemical staining of sea urchin embryos for alkaline phosphatase (AP) enzyme activity 1. Obtain embryo samples, tube of AP substrate buffer and tube of phosphate buffered saline ( PBS ) for each group. Allow embryos
1.1 General information Endothelial cells possess an endogenous alkaline phosphatase (AP) activity. The enzymatic activity of AP is not restricted to the endothelial lineage. In medaka embryos, somite cells during early developmental stages
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