CAS 13389-09-8
:8-AMINO-2'-DEOXYADENOSINE
Description:
8-Amino-2'-deoxyadenosine is a modified nucleoside that features an amino group at the 8-position of the adenine base, which is attached to a deoxyribose sugar. This compound is notable for its role in various biochemical processes, particularly in the context of nucleic acid metabolism and cellular signaling. The presence of the amino group can influence the molecule's hydrogen bonding capabilities, potentially affecting its interactions with other biomolecules, such as enzymes and receptors. 8-Amino-2'-deoxyadenosine is often studied for its implications in molecular biology and pharmacology, especially regarding its potential as a therapeutic agent or as a tool in research to understand nucleic acid functions. Its chemical structure allows it to participate in various biochemical pathways, and it may exhibit unique properties compared to its unmodified counterparts. Additionally, the compound's stability, solubility, and reactivity can vary based on environmental conditions, making it an interesting subject for further investigation in both synthetic and biological chemistry.
Formula:C10H14N6O3
InChI:InChI=1/C10H14N6O3/c11-8-7-9(14-3-13-8)16(10(12)15-7)6-1-4(18)5(2-17)19-6/h3-6,17-18H,1-2H2,(H2,12,15)(H2,11,13,14)
SMILES:C1C(C(CO)OC1n1c2c(c(N)ncn2)[nH]c1=N)O
Synonyms:- 8-Amino-dA
- 9H-Purine, 6,8-diamino-9-(2-deoxy-beta-D-ribofuranosyl)-
- 9-(2-deoxypentofuranosyl)-9H-purine-6,8-diamine
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Found 2 products.
8-Amino-2'-deoxyadenosine
CAS:<p>Nucleoside Derivatives - 8-Modified purine nucleosides; Amino nucleosides</p>Formula:C10H14N6O3Color and Shape:SolidMolecular weight:266.268-Amino-2’-deoxyadenosine
CAS:<p>8-Amino-2’-deoxyadenosine (8AAD) is a nucleoside that is used in the laboratory for the analysis of dna duplexes. It stabilizes dna duplexes in an acidic environment, and it can be used to analyze the stability of dna duplexes at neutral pH. 8AAD can also stabilize triplex structures formed by 8AAD, amines, and purines. The orientation of these bases in the triplex structure is important because they can determine which strands are cleaved during hydrolysis.</p>Formula:C10H14N6O3Purity:Min. 95%Molecular weight:266.26 g/mol

