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You are at: All > Nucleotides > Nucleotides by Structural Class > Base Modified Ribonucleoside Triphosphates

N-1001
2-Aminoadenosine-5'-Triphosphate

2-Amino-ATP, 2,6-Diaminopurine-ribose-5'-Triphosphate, DAP-rTP



2-Aminoadenosine-5'-Triphosphate

Extinction Coefficient: 9,894 Lmol-1cm-1 at 279 nm
Molecular Weight: 522.2 g/mol (free acid)
Molecular Formula: C10H17N6O13P3 (free acid)
Salt Form: Lithium
Purity Specification: ≥90% by AX-HPLC
 
Shipped at 100 mM in H2O.
1 µmole: 10 µL
5 µmole: 50 µL
10 µmole: 100 µL
 
 
Certificate(s) of Analysis
 
 



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Reference(s)
Sazani PL, Larralde R, Szostak JW. A small aptamer with strong and specific recognition of the triphosphate of ATP. (2004) J Am Chem Soc, 126(27): 8370-1.
Chen LS, Sheppard TL. Chain termination and inhibition of Saccharomyces cerevisiae poly(A) polymerase by C-8-modified ATP analogs. (2004) J. Biol. Chem., 279(39): 40405-40411.
Cho HD, Oyelere AK, Strobel SA, Weiner AM. Use of nucleotide analogs by class I and class II CCA-adding enzymes (tRNA nucleotidyltransferase): deciphering the basis for nucleotide selection. (2003) RNA, 3(8): 970-81.
Vaish NK, et al. A novel, modification-dependent ATP-binding aptamer selected from an RNA library incorporating a cationic functionality. (2003) Biochemistry, 42: 8842-8851.
McGinness KE, Joyce GF. RNA-catalyzed RNA ligation on an external RNA template. (2002) Chemistry & Biology, 9: 297-307.
Nguyen A, Zhao C, Dorris D, Mazumder A. Quantitative assessment of the use of modified nucleoside triphosphates in expression profiling: differential effects on signal intensities and impacts on expression ratios. (2002) BMC Biotechnology, 2(1): 14.


 

 


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