Cyanine 5.5 Phosphoramidite

Cyanine 5.5 Phosphoramidite

Catalog number: BRK-011

Cyanine 5.5 Phosphoramidite is a fluorescent dye used for oligonucleotide labeling.

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Synonyms
1-[3-(4-monomethoxytrityloxy)propyl]-1'-[3-[(2-cyanoethyl)-(N,N-diisopropyl)phosphoramidityl]propyl]-3,3,3',3'-tetramethyl-4,5-benzindodicarbocyanine iodide
Molecular Weight
1172.24
Molecular Formula
C68H77IN4O4P
Purity
> 95%
Appearance
Blue Solid
Storage
Freezer storage, -10 to -30 °C, dry.
Symbol
Cy5.5 Phosphoramidite

Chemical Structure:

Reference Reading

1. Synthesis of Substituted Cy5 Phosphoramidite Derivatives and Their Incorporation into Oligonucleotides Using Automated DNA Synthesis
Adam Meares, Kimihiro Susumu, Divita Mathur, Sang Ho Lee, Olga A Mass, Jeunghoon Lee, Ryan D Pensack, Bernard Yurke, William B Knowlton, Joseph S Melinger, Igor L Medintz. ACS Omega. 2022 Mar 22;7(13):11002-11016. doi: 10.1021/acsomega.1c06921.
Cyanine dyes represent a family of organic fluorophores with widespread utility in biological-based applications ranging from real-time PCR probes to protein labeling. One burgeoning use currently being explored with indodicarbocyanine (Cy5) in particular is that of accessing exciton delocalization in designer DNA dye aggregate structures for potential development of light-harvesting devices and room-temperature quantum computers. Tuning the hydrophilicity/hydrophobicity of Cy5 dyes in such DNA structures should influence the strength of their excitonic coupling; however, the requisite commercial Cy5 derivatives available for direct incorporation into DNA are nonexistent. Here, we prepare a series of Cy5 derivatives that possess different 5,5'-substituents and detail their incorporation into a set of DNA sequences. In addition to varying dye hydrophobicity/hydrophilicity, the 5,5'-substituents, including hexyloxy, triethyleneglycol monomethyl ether, tert-butyl, and chloro groups were chosen so as to vary the inherent electron-donating/withdrawing character while also tuning their resulting absorption and emission properties. Following the synthesis of parent dyes, one of their pendant alkyl chains was functionalized with a monomethoxytrityl protective group with the remaining hydroxyl-terminated N-propyl linker permitting rapid, same-day phosphoramidite conversion and direct internal DNA incorporation into nascent oligonucleotides with moderate to good yields using a 1 μmole scale automated DNA synthesis. Labeled sequences were cleaved from the controlled pore glass matrix, purified by HPLC, and their photophysical properties were characterized. The DNA-labeled Cy5 derivatives displayed spectroscopic properties that paralleled the parent dyes, with either no change or an increase in fluorescence quantum yield depending upon sequence.
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