Cas no 15237-44-2 (Adenosine 5'-(tetrahydrogen triphosphate), sodium salt (1:?))
Adenosine 5'-(tetrahydrogen triphosphate), sodium salt (1:?) Chemical and Physical Properties
Names and Identifiers
-
- Adenosine5'-(tetrahydrogen triphosphate), sodium salt (1:?)
- sodium,[[[(2R,3S,4R,5R)-5-(6-aminopurin-9-yl)-3,4-dihydroxyoxolan-2-yl]methoxy-hydroxyphosphoryl]oxy-hydroxyphosphoryl] hydrogen phosphate
- Sodium adenosine-5'-triphosphate
- Sodium adenosine triphosphate
- Sodium ATP
- Adenosine 5'-triphosphate sodium salt
- ATP-Na
- ATP Na salt
- Adenosine 5'-(tetrahydrogen triphosphate), sodium salt (8CI,9CI)
- NaAtP
- Sodium adenosine triphosphate
- Sodium ATP
- ATP Na salt
- Adenosine triphosphate disodium salt
- C10H16N5O13P3.xNa
- ATP-Na
- C10-H16-N5-O13-P3.x-Na
- 15237-44-2
- SCHEMBL1496208
- ADENOSINE 5'-(TETRAHYDROGEN TRIPHOSPHATE), SODIUM SALT
- Adenosine triphosphoric acid sodium salt
- Sodium adenosine-5'-triphosphate
- DTXSID60165008
- Adenosine 5'-triphosphate sodium salt
- ATP xsodium
- 4691-96-7
- Sodium ((2R,3S,4R,5R)-5-(6-amino-9H-purin-9-yl)-3,4-dihydroxytetrahydrofuran-2-yl)methyl trihydrogen triphosphate
- RMJPDRUNCDRUQC-MCDZGGTQSA-M
- DTXCID5087499
- Adenosine 5'-(tetrahydrogen triphosphate), sodium salt (1:?)
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- Inchi: 1S/C10H16N5O13P3.Na/c11-8-5-9(13-2-12-8)15(3-14-5)10-7(17)6(16)4(26-10)1-25-30(21,22)28-31(23,24)27-29(18,19)20;/h2-4,6-7,10,16-17H,1H2,(H,21,22)(H,23,24)(H2,11,12,13)(H2,18,19,20);/q;+1/p-1/t4-,6-,7-,10-;/m1./s1
- InChI Key: RMJPDRUNCDRUQC-MCDZGGTQSA-M
- SMILES: P(=O)(O)(OP(=O)(O)OP(=O)(O)[O-])OC[C@@H]1[C@H]([C@H]([C@H](N2C=NC3C(N)=NC=NC2=3)O1)O)O.[Na+]
Computed Properties
- Exact Mass: 528.97769
- Monoisotopic Mass: 528.97769
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 6
- Hydrogen Bond Acceptor Count: 13
- Heavy Atom Count: 32
- Rotatable Bond Count: 8
- Complexity: 812
- Covalently-Bonded Unit Count: 2
- Defined Atom Stereocenter Count: 4
- Undefined Atom Stereocenter Count : 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- Topological Polar Surface Area: 282
Experimental Properties
- Boiling Point: 951.4°C at 760 mmHg
- Flash Point: 529.2°C
- PSA: 311.39000
- LogP: -0.60960
Adenosine 5'-(tetrahydrogen triphosphate), sodium salt (1:?) Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| SHANG HAI SHAO YUAN SHI JI Co., Ltd. | TCIA3621-0.25ml |
Adenosine 5'-Triphosphate Sodium Salt(ca. 100mM in Water) [for transcription][for Molecular Biology] |
15237-44-2 | 0.25ml |
¥490.00 | 2024-08-09 |
Adenosine 5'-(tetrahydrogen triphosphate), sodium salt (1:?) Related Literature
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Vishwesh Venkatraman,Marco Foscato,Vidar R. Jensen,Bj?rn K?re Alsberg J. Mater. Chem. A, 2015,3, 9851-9860
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Ross Harder,David C. Dunand,Ian McNulty Nanoscale, 2017,9, 5686-5693
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Yong Ping Huang,Tao Tao,Zheng Chen,Wei Han,Ying Wu,Chunjiang Kuang,Shaoxiong Zhou,Ying Chen J. Mater. Chem. A, 2014,2, 18831-18837
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Weili Dai,Guangjun Wu,Michael Hunger Chem. Commun., 2015,51, 13779-13782
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Bo Wei,Zhenyu Liu,Chen Xie,Shu Yang,Wentao Tang,Aiwei Gu,Wing-Tak Wong,Ka-Leung Wong J. Mater. Chem. C, 2015,3, 12322-12327
Related Categories
- Solvents and Organic Chemicals Organic Compounds Nucleosides, nucleotides, and analogues Purine nucleotides Purine ribonucleoside triphosphates
- Solvents and Organic Chemicals Organic Compounds Nucleosides, nucleotides, and analogues Purine nucleotides Purine ribonucleotides Purine ribonucleoside triphosphates
Additional information on Adenosine 5'-(tetrahydrogen triphosphate), sodium salt (1:?)
Adenosine 5'-(Tetrahydrogen Triphosphate), Sodium Salt (CAS No. 15237-44-2)
Adenosine 5'-(tetrahydrogen triphosphate), sodium salt, commonly referred to as sodium adenosine tetraphosphate or abbreviated as APTP, is a nucleotide derivative with significant biological and pharmacological importance. This compound, identified by the CAS registry number 15237-44-2, is a sodium salt of adenosine tetraphosphate, which is a high-energy nucleotide that plays a critical role in cellular energy transfer and signaling processes.
The chemical structure of APTP consists of an adenosine moiety linked to four phosphate groups via high-energy phosphoanhydride bonds. This structure endows the molecule with unique properties, including its ability to act as an energy-rich intermediate in cellular metabolism. The sodium salt form of APTP is particularly relevant in biological systems, where it serves as a substrate for various enzymes and signaling pathways.
Recent studies have highlighted the role of APTP in cellular signaling and energy metabolism. For instance, research has demonstrated that APTP can act as an allosteric modulator of certain ion channels and receptors, influencing cellular excitability and neurotransmitter release. Additionally, APTP has been implicated in processes such as DNA repair, apoptosis, and inflammation, underscoring its multifaceted role in cellular physiology.
In the context of drug development, APTP has emerged as a potential therapeutic agent for various pathological conditions. For example, preclinical studies have shown that APTP analogs can modulate ion channel activity, offering potential benefits in the treatment of neurological disorders such as epilepsy and chronic pain. Furthermore, APTP has been investigated for its potential role in cancer therapy, where it may influence tumor cell proliferation and apoptosis.
The synthesis and characterization of sodium adenosine tetraphosphate have also been subjects of recent research interest. Advances in chemical synthesis techniques have enabled the production of high-purity APTP salts, which are essential for both basic research and pharmaceutical applications. These advancements have also facilitated the exploration of APTP's pharmacokinetics and bioavailability, providing critical insights into its potential therapeutic utility.
In conclusion, Adenosine 5'-(tetrahydrogen triphosphate), sodium salt (CAS No. 15237-44-2) is a versatile compound with significant implications in cellular biology and drug discovery. Its unique chemical properties and diverse biological functions make it a valuable tool for researchers across various disciplines. As ongoing studies continue to unravel the full scope of APTP's roles in health and disease, this compound is poised to contribute significantly to the development of novel therapeutic strategies.
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