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Adenosine 5′-triphosphate magnesium salt

Cat. No. M21636
Adenosine 5′-triphosphate magnesium salt Structure
Synonym:

ATP magnesium salt

Size Price Availability Quantity
100mg USD 150  USD150 In stock
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Biological Activity

ATP (Adenosine 5'-triphosphate) magnesium is a central component of energy storage and metabolism in vivo. ATP dimagnesium provides the metabolic energy to drive metabolic pumps and serves as a coenzyme in cells. Adenosine 5γ-triphosphate (ATP) is a central component of energy storage and metabolism in vivo. ATP is use in many cellular processes, respiration, biosynthetic reactions, motility, and cell division. ATP is a substrate of many kinases involved in cell signaling and of adenylate cyclase(s) that produce the second messenger cAMP. ATP provides the metabolic energy to drive metabolic pumps. ATP serves as a coenzyme in a wide array of enzymatic reactions. ATP magnesium is an important endogenous signaling molecule in immunity and inflammation.

Chemical Information
Formula C10H16N5O13P3.xMg
CAS Number 74804-12-9
Solubility (25°C) Water 50 mg/mL
Storage -20°C, dry, sealed
Conversion of different model animals based on BSA (PMID: 27057123)
Species Mouse Rat Rabbit Guinea pig Hamster Dog
Weight (kg) 0.02 0.15 1.8 0.4 0.08 10
Body Surface Area (m2) 0.007 0.025 0.15 0.05 0.02 0.5
Km factor 3 6 12 8 5 20
Animal A (mg/kg) = Animal B (mg/kg) multiplied by  Animal B Km
Animal A Km

For example, to modify the dose of Compound A used for a mouse (20 mg/kg) to a dose based on the BSA for a rat, multiply 20 mg/kg by the Km factor for a mouse and then divide by the Km factor for a rat. This calculation results in a rat equivalent dose for Compound A of 10 mg/kg.

References

[1] Qi Xi, et al. Pflugers Arch. Regulation of magnesium reabsorption in DCT

[2] M A Geeves, et al. Biochemistry. Protein-bound adenosine 5'-triphosphate: properties of a key intermediate of the magnesium-dependent subfragment 1 adenosinetriphosphatase from rabbit skeletal muscle

[3] H Holmsen, et al. Biochem J. The adenosine triphosphate inhibition of the pyruvate kinase reaction and its dependence on the total magnesium ion concentration

[4] P J Garrahan, et al. J Physiol. The stoicheiometry of the sodium pump

[5] S S Bang, et al. Can J Microbiol. Properties of 1-phosphofructokinase from Pseudomonas putida

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