2'-Azido-2'-deoxycytidine-5'-Triphosphate - (N-1028)
2'-Azido-dCTP
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N-1028
Description
2'-Azido-2'-deoxycytidine-5'-Triphosphate contains an azido group at the 2' position which allows labeling of DNA and RNA with alkyne-containing "click" reagents. 2'-Azido-dUTP is also used in aptamer synthesis to expand on the canonical nucleotides and increase variation in binding characteristics.
Product details
Catalog No | N-1028 |
---|---|
Purity | ≥90% by AX-HPLC |
Extinction Coefficient | 9,100 Lmol-1cm-1 at 271 nm |
Molecular Formula | C9H15N6O13P3 (free acid) |
Molecular Weight | 508.10 g/mole (free acid) |
Salt Form | Li+ |
Concentration | 100 mM |
Buffer | H2O |
Recommended Storage | -20°C or below |
Other Name(s) | 2'-Azido-dCTP |
Application | Aptamers |
Backbone | 5'-Triphosphate |
Base Analog(s) | Cytidine |
Sugar Type(s) | 2'-Azido |
Nucleotide Category | Sugar Modified |
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References
- Maga, G.; Amacker, M.; Hübscher, U.; Gosselin, G.; Imbach, J. L.; Mathé, C.; Faraj, A.; Sommadossi, J. P.; Spadari, S. . Molecular basis for the enantioselectivity of HIV-1 reverse transcriptase: role of the 3'-hydroxyl group of the L-(beta)-ribose in chiral discrimination between D- and
- Kumaki, Yohichi; Day, Craig W.; Smee, Donald F.; Morrey, John D.; Barnard, Dale L. . In vitro and in vivo efficacy of fluorodeoxycytidine analogs against highly pathogenic avian influenza H5N1, seasonal, and pandemic H1N1 virus infections.
- Lauridsen, Lasse H.; Rothnagel, Joseph A.; Veedu, Rakesh N. . Enzymatic recognition of 2'-modified ribonucleoside 5'-triphosphates: towards the evolution of versatile aptamers.
- Cozens, Christopher; Pinheiro, Vitor B.; Vaisman, Alexandra; Woodgate, Roger; Holliger, Philipp . A short adaptive path from DNA to RNA polymerases.
- Ravichandran, Kanchana; Minnihan, Ellen C.; Lin, Qinghui; Yokoyama, Kenichi; Taguchi, Alexander T.; Shao, Jimin; Nocera, Daniel G.; Stubbe, JoAnne . Glutamate 350 Plays an Essential Role in Conformational Gating of Long-Range Radical Transport in Escherichia coli Class Ia Ribonucleotide Reductase.