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ADENOSINE 5'-TRIPHOSPHATE MAGNESIUM SALT is a complex molecule that combines adenosine, a nucleoside, with three phosphate groups and a magnesium ion. It plays a crucial role in cellular energy transfer and enzymatic reactions, serving as a vital cofactor in numerous biochemical processes.

74804-12-9

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74804-12-9 Usage

Uses

Used in Cellular Biology Research:
ADENOSINE 5'-TRIPHOSPHATE MAGNESIUM SALT is used as a supplement in intracellular medium for Ca2+ retention assay and fluorescence wide field imaging analysis, enabling the study of calcium ion dynamics and cellular processes.
Used in Neurophysiology:
In the field of neurophysiology, ADENOSINE 5'-TRIPHOSPHATE MAGNESIUM SALT is used as a component in potassium methane sulfonate-based internal solution for in vitro electrophysiology of cortical neurons, facilitating the investigation of neuronal function and electrical activity.
Used in Action Potential Studies:
ADENOSINE 5'-TRIPHOSPHATE MAGNESIUM SALT is also utilized as a component in action potential intracellular solution, aiding researchers in understanding the mechanisms behind the generation and propagation of action potentials in cells.

Biochem/physiol Actions

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.

Check Digit Verification of cas no

The CAS Registry Mumber 74804-12-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 7,4,8,0 and 4 respectively; the second part has 2 digits, 1 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 74804-12:
(7*7)+(6*4)+(5*8)+(4*0)+(3*4)+(2*1)+(1*2)=129
129 % 10 = 9
So 74804-12-9 is a valid CAS Registry Number.

74804-12-9SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 18, 2017

Revision Date: Aug 18, 2017

1.Identification

1.1 GHS Product identifier

Product name [[5-(6-aminopurin-9-yl)-3,4-dihydroxyoxolan-2-yl]methoxy-hydroxyphosphoryl] phosphono hydrogen phosphate,magnesium

1.2 Other means of identification

Product number -
Other names Adenosine 5'-triphosphate magnesium salt

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:74804-12-9 SDS

74804-12-9Upstream product

74804-12-9Downstream Products

74804-12-9Relevant academic research and scientific papers

Energetic effects of magnesium in the recognition of adenosine nucleotides by the F1-ATPase β subunit

Pulido, Nancy O.,Salcedo, Guillermo,Perez-Hernandez, Gerardo,Jose-Nunez, Concepcion,Velazquez-Campoy, Adrian,Garcia-Hernandez, Enrique

experimental part, p. 5258 - 5268 (2011/03/23)

Nucleotide-induced conformational changes of the catalytic β subunits play a crucial role in the rotary mechanism of F1-ATPase. To gain insights into the energetic bases that govern the recognition of nucleotides by the isolated β subunit from thermophilic Bacillus PS3 (Tβ), the binding of this monomer to Mg(II)-free and Mg(II)-bound adenosine nucleotides was characterized using high-precision isothermal titration calorimetry. The interactions of Mg(II) with free ATP or ADP were also measured calorimetrically. A model that considers simultaneously the interactions of Tβ with Mg·ATP or with ATP and in which ATP is able to bind two Mg(II) atoms sequentially was used to determine the formation parameters of the Tβ-Mg·ATP complex from calorimetric data. This analysis yielded significantly different ΔHb and ΔSb values in relation to those obtained using a single-binding site model, while ΔGb was almost unchanged. Published calorimetric data for the titration of Tβ with Mg·ADP [Perez-Hernandez, G., et al. (2002) Arch. Biochem. Biophys. 408, 177-183] were reanalyzed with the ternary model to determine the corresponding true binding parameters. Interactions of Tβ with Mg·ATP, ATP, Mg·ADP, or ADP were enthalpically driven. Larger differences in thermodynamic properties were observed between Tβ-Mg·ATP and Tβ-ATP complexes than between Tβ-Mg·ADP and Tβ-ADP complexes or between Tβ-Mg·ATP and Tβ-Mg·ADP complexes. These binding data, in conjunction with those for the association of Mg(II) with free nucleotides, allowed for a determination of the energetic effects of the metal ion on the recognition of adenosine nucleotides by Tβ [i.e., Tβ·AT(D)P + Mg(II) ? Tβ·AT(D)P-Mg]. Because of a more favorable binding enthalpy, Mg(II) is recognized more avidly by the Tβ·ATP complex, indicating better stereochemical complementarity than in the Tβ·ADP complex. Furthermore, a structural-energetic analysis suggests that Tβ adopts a more closed conformation when it is bound to Mg·ATP than to ATP or Mg·ADP, in agreement with recently published NMR data [Yagi, H., et al. (2009) J. Biol. Chem. 284, 2374-2382]. Using published binding data, a similar analysis of Mg(II) energetic effects was performed for the free energy change of F1 catalytic sites, in the framework of bi- or tri-site binding models.

SYNTHESIS, STRUCTURE, PROTON-NUCLEAR MAGNETIC RESONANCE, AND FOURIER TRANSFORM INFRARED SPECTROSCOPY OF SEVERAL TRANSITION AND NONTRANSITION METAL-ADENOSINE-5-TRIPHOSPHATE COMPLEXES

Tajmir-Riahi, H. A.,Bertrand, M. J.,Theophanides, T.

, p. 960 - 966 (2007/10/02)

Several complexes of adenosine-5-triphosphate disodium salt (Na2H2ATP) with the metal ions, Na(1+), Mg(2+), Ca(2+), Mn(2+), Co(2+), Ni(2+), Cu(2+), and cis- and trans-Pt(NH3)2Cl2 and K2PtCl4 at pH = 3.5 and 7.2 have been isolated, identified, and studied.Marked spectral similarities have been observed for the structurally known metal-phosphate bonded compounds, 2.7H2O and 2.4H2O and all the metal-ATP complexes studied here, except the Pt-ATP complexes.The metal binding is through the α, β, and γ phosphate oxygen atoms when the N1-position of adenine is protonated.Spectral changes have also been observed for the Pt-ATP complexes in which there is a Pt-N7 and -N1 coordination.The sugar pucker in the Na2H2ATP.3H2O crystal dimers is C3'-endo-anti (in one) and C2'-endo-anti (in the other) with a characteristic infrared band at 818 cm-1.In the corresponding Cu(2+) and Zn(2+) complexes the sugar has C3'-endo-anti conformation with the marker band at about 814 cm-1.The C2'-endo-anti conformation is observed for all the metal-ATP complexes prepared here with a marker band at 825-822 cm-1.

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