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TriLink® 2'-Deoxycytidine-5'-Triphosphate

TriLink® 2'-Deoxycytidine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This nucleotide consists of an unmodified base, a deoxyribose, and a 5′ triphosphate group for synthesis of DNA molecules.

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TriLink® 2'-Deoxyguanosine-5'-Triphosphate

TriLink® 2'-Deoxyguanosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This nucleotide consists of an unmodified base, a deoxyribose, and a 5′ triphosphate group for synthesis of DNA molecules.

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TriLink® Biotin-16-Aminoallyluridine-5'-Triphosphate

TriLink® Biotin-16-Aminoallyluridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

Biotin-16-Aminoallyluridine-5'-Triphosphate (Biotin-16-UTP, Biotin-16-AA-UTP) can be incorporated via a number of RNA polymerases, including SP6-, T3- and T7-RNA polymerase to form labeled RNA.

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5-Tetramethylrhodamine-dUTP, 1 mM Solution

Supplier: Biotium

5-TAMRA-dUTP (5-Tetramethylrhodamine-dUTP) can be enzymatically incorporated into DNA to make fluorescently labeled probes, and has absorption/emission at 553/577 nm. Note: 5-TAMRA-dUTP may not be compatible with PCR labeling of DNA probes. Supplied as a 1 mM solution in Tris-HCl buffer, pH 7.5.

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AMPIGENE® dNTP Mix

Supplier: ENZO LIFE SCIENCES

Ultra-pure, stable, and suitable for a variety of PCR applications.

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Fluorescent nucleotides, Red 594 dUTP and Red 598 dUTP

Supplier: ENZO LIFE SCIENCES

Red dUTP's (Red 594 dUTP, Red 598 dUTP) can replace TTP in reactions in which it serves as a substrate for E. coli DNA polymerase (holoenzyme and Klenow fragment), T4 and Taq DNA polymerases, reverse transcriptase (from AMV and M-MuLV) and terminal transferase.

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Dideoxyuridine triphosphates (ddUTPs)

Supplier: ENZO LIFE SCIENCES

These ddUTPs are used for 3’-end labeling of oligodeoxynucleotides using terminal transferase. ddUTP also serves as a substrate for E. coli DNA Polymerase I (holoenzyme and Klenow fragment), T4 and T7 DNA polymerases, Taq DNA polymerase and reverse transcriptase.

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Cyanine 3-dUTP

Cyanine 3-dUTP

Supplier: ENZO LIFE SCIENCES

Cyanine 3-dUTP can replace TTP in reactions in which it serves as a substrate for E. coli DNA polymerase (holoenzyme and Klenow fragment), T4 and Taq DNA polymerases, reverse transcriptase (from AMV and M-MuLV) and terminal transferase. Fluorescently labeled probes can be prepared with this fluorescent nucleotide by a variety of methods including nick translation, cDNA labeling and 3’-end labeling. Probes generated by these methods are suitable for use for the identification of specific sequences by in situ hybridization procedures on fixed cells and tissues by direct fluorescence detection. Cyanine 3-dUTP can also be used for multicolor fluorescence labeling.

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TriLink® Pseudouridine-5'-Triphosphate

TriLink® Pseudouridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This nucleotide consists of a modified base, a ribose, and a 5′ triphosphate group.

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TriLink® 2'-Deoxy-P-nucleoside-5'-Triphosphate

TriLink® 2'-Deoxy-P-nucleoside-5'-Triphosphate

Supplier: TriLink BioTechnologies

2'-Deoxy-P-nucleoside is a degenerate base which behaves as a universal pyrimidine and therefore base pairs with both adenine and guanine. This feature makes it a powerful tool in mutagenesis studies.

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TriLink® 5-Propargylamino-2'-deoxycytidine-5'-Triphosphate

TriLink® 5-Propargylamino-2'-deoxycytidine-5'-Triphosphate

Supplier: TriLink BioTechnologies

TriLink® 5-Propargylamino-2'-deoxycytidine-5'-Triphosphate

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TriLink® 2'-O-Methylcytidine-5'-Triphosphate

TriLink® 2'-O-Methylcytidine-5'-Triphosphate

Supplier: TriLink BioTechnologies

TriLink® 2'-O-Methylcytidine-5'-Triphosphate

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Bio-16-UTP

Bio-16-UTP

Supplier: ENZO LIFE SCIENCES

Bio-16-UTP (Biotin-16-uridine-5’-triphosphate) can replace UTP for in vitro transcription reaction catalysed by T3, T7 or SP6 RNA polymerases.

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Bio-11-CTP

Bio-11-CTP

Supplier: ENZO LIFE SCIENCES

Bio-11-CTP (Biotin-11-cytidine-5’-triphosphate) can replace CTP for in vitro transcription reaction catalysed by T3, T7 or SP6 RNA polymerases.

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TriLink® N1-Methyl-Pseudouridine-5'-Triphosphate

TriLink® N1-Methyl-Pseudouridine-5'-Triphosphate

Supplier: TriLink BioTechnologies

N1-Methyl-Pseudouridine-5'-Triphosphate is widely used in mRNA synthesis for therapeutic and vaccine development to improve mRNA functionality. This nucleotide consists of a modified base, a ribose, and a 5′ triphosphate group.

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TriLink® 2'-Deoxythymidine-5'-O-(1-Thiotriphosphate)

TriLink® 2'-Deoxythymidine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

TriLink® 2'-Deoxythymidine-5'-O-(1-Thiotriphosphate)

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TriLink® 2',3'-Dideoxyguanosine-5'-O-(1-Thiotriphosphate)

TriLink® 2',3'-Dideoxyguanosine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

2',3'-Dideoxyguanosine-5'-O-(1-Thiotriphosphate) is a sugar modified nucleoside triphosphate where the 2' and 3' hydroxyl groups are absent, resulting in chain termination. This ddGTP analog also contains a 1-Thiotriphosphate which results in a nuclease resistant phosphorothioate linkage. The inability of polymerases to extend from a dideoxy nucleotide causes chain termination and is useful in antiviral research and in a variety of biotechnology applications.

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TriLink® 2',3'-Dideoxythymidine-5'-O-(1-Thiotriphosphate)

TriLink® 2',3'-Dideoxythymidine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

2',3'-Dideoxythymidine-5'-O-(1-Thiotriphosphate) is a sugar modified nucleoside triphosphate where the 2' and 3' hydroxyl groups are absent, resulting in chain termination. This ddTTP analog also contains a 1-Thiotriphosphate which results in a nuclease resistant phosphorothioate linkage. The inability of polymerases to extend from a dideoxy nucleotide causes chain termination and is useful in antiviral research and in a variety of biotechnology applications.

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TriLink® 7-Deaza-2'-deoxyguanosine-5'-Triphosphate

TriLink® 7-Deaza-2'-deoxyguanosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This deoxyguanosine analog lacks the N7 nitrogen found in the natural guanine nucleobase. Replacement of this nitrogen atom with a carbon atom results in diminished structure of the major groove in DNA and may disrupt base stacking, but does not interfere with Watson-Crick base pairing. This is desirable for applications such as amplification and sequencing of GC-rich nucleic acid sequences.

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TriLink® N7-Methyl-3'-O-Methyl-Guanosine-5'-Triphosphate-5'-Guanosine

TriLink® N7-Methyl-3'-O-Methyl-Guanosine-5'-Triphosphate-5'-Guanosine

Supplier: TriLink BioTechnologies

TriLink® N7-Methyl-3'-O-Methyl-Guanosine-5'-Triphosphate-5'-Guanosine

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Fluorescein-12-ddUTP dideoxynucleotide pack for 3’-oligonucleotide labeling

Supplier: ENZO LIFE SCIENCES

The procedure for labeling of DNA probes with a polynucleotide 'tail' containing hapten-labeled nucleotides was developed by Enzo. In such terminal labeling reactions, terminal transferase catalyzes the addition of nucleotides to any 3'-OH terminus in a template independent manner. This rapid and convenient nonradioactive labeling procedure is free of any sequence bias that is normally observed in random priming or nick translation reactions.

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Digoxigenin-UTP, alkali-stable

Supplier: ENZO LIFE SCIENCES

Digoxigenin-labeled nucleotide suitable for non-radioactive labeling of RNA probes.

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Cyanine 5-UTP (enhanced)

Cyanine 5-UTP (enhanced)

Supplier: ENZO LIFE SCIENCES

Cyanine 5-UTP (Enhanced) can replace UTP as a substrate for T7 RNA polymerase in labeling systems that generate labeled probes through in vitro transcription. Probes generated by these methods are suitable for multicolor fluorescence analysis, specifically dual-color expression arrays in conjunction with cyanine 3-UTP.

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TriLink® N6-Methyladenosine-5'-Triphosphate

TriLink® N6-Methyladenosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

N6-methyl adenosine (N6-methyl ATP) is a base modified analog of adenosine and is found as a minor nucleoside in natural RNAs (Meyer et al.). N6-methyl ATP can substitute for ATP in some biological systems, and is a potent agonist for P2Y-purinoceptors in the guinea pig, taenia coli (Burnstock et al.).

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TriLink® Guanosine-5'-Triphosphate

TriLink® Guanosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

This nucleotide consists of an unmodified base, a ribose, and a 5′ triphosphate group for synthesis of RNA molecules.

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TriLink® 2'-Deoxyadenosine-5'-O-(1-Thiotriphosphate)

TriLink® 2'-Deoxyadenosine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

TriLink® 2'-Deoxyadenosine-5'-O-(1-Thiotriphosphate)

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TriLink® 2'-Deoxycytidine-5'-O-(1-Thiotriphosphate)

TriLink® 2'-Deoxycytidine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

TriLink® 2'-Deoxycytidine-5'-O-(1-Thiotriphosphate)

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TriLink® 2'-Fluoro-2'-deoxycytidine-5'-Triphosphate

TriLink® 2'-Fluoro-2'-deoxycytidine-5'-Triphosphate

Supplier: TriLink BioTechnologies

2'-Fluoro NTPs are being utilised in an increasing number of applications in research and new drug development. 2'-Fluoro-dCTP is incorporated in both DNA and RNA constructs to improve in vivo stability.

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TriLink® 2'-O-Methyl-N6-Methyladenosine-5'-Triphosphate

TriLink® 2'-O-Methyl-N6-Methyladenosine-5'-Triphosphate

Supplier: TriLink BioTechnologies

TriLink® 2'-O-Methyl-N6-Methyladenosine-5'-Triphosphate

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TriLink® 2',3'-Dideoxyadenosine-5'-O-(1-Thiotriphosphate)

TriLink® 2',3'-Dideoxyadenosine-5'-O-(1-Thiotriphosphate)

Supplier: TriLink BioTechnologies

2',3'-Dideoxyadenosine-5'-O-(1-Thiotriphosphate) is a sugar modified nucleoside triphosphate where the 2' and 3' hydroxyl groups are absent, resulting in chain termination. This ddATP analog also contains a 1-Thiotriphosphate which results in a nuclease resistant phosphorothioate linkage. The inability of polymerases to extend from a dideoxy nucleotide causes chain termination and is useful in antiviral research and in a variety of biotechnology applications.

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