Synthesis and application of a <sup>19</sup>F-labeled fluorescent nucleoside as a dual-mode probe for i-motif DNAs
Синтез и применение флуоресцентного нуклеозида, меченного 19F, в качестве двухрежимного зонда для i‑мотивов ДНК
2021-01-01
SCID: 54.1/d48ehaju
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19F-labeled fluorescent nucleosidedual-mode probe (fluorescence and 19F NMR)i-motif DNAreversible fluorescence switching (Ag(I) and cysteine)trifluoromethylphenylpyrrolocytidine (FPdC)
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Abstract (AI)
Because of their stable orientations and their minimal interference with native DNA interactions and folding, emissive isomorphic nucleoside analogues are versatile tools for the accurate analysis of DNA structural heterogeneity. Here, we report on a bifunctional trifluoromethylphenylpyrrolocytidine derivative (<b>FPdC</b>) that displays an unprecedented quantum yield and highly sensitive <sup>19</sup>F NMR signal. This is the first report of a cytosine-based dual-purpose probe for both fluorescence and <sup>19</sup>F NMR spectroscopic DNA analysis. <b>FPdC</b> and <b>FPdC</b>-containing DNA were synthesized and characterized; our robust dual probe was successfully used to investigate the noncanonical DNA structure, i-motifs, through changes in fluorescence intensity and <sup>19</sup>F chemical shift in response to i-motif formation. The utility of <b>FPdC</b> was exemplified through reversible fluorescence switching of an <b>FPdC</b>-containing i-motif oligonucleotide in the presence of Ag(i) and cysteine.
Key Findings
1
A bifunctional trifluoromethylphenylpyrrolocytidine derivative (FPdC) was synthesized as a dual-mode probe combining fluorescence and 19F NMR sensitivity.
2
An FPdC-containing i-motif oligonucleotide demonstrated reversible fluorescence switching in response to Ag(I) and cysteine.
3
FPdC exhibits an unprecedented quantum yield and a highly sensitive 19F NMR signal among cytosine-based probes.
4
FPdC-containing DNA successfully detected i-motif formation via changes in fluorescence intensity and 19F chemical shift.
5
This is the first reported cytosine-based dual-purpose probe for both fluorescence and 19F NMR spectroscopic analysis of DNA.
Research Object
Trifluoromethylphenylpyrrolocytidine derivative (FPdC) and FPdC-containing DNA oligonucleotides used as a dual-mode (fluorescence and 19F NMR) probe
Research Subject
Use and performance of FPdC as a bifunctional probe to detect and report i-motif DNA formation via changes in fluorescence intensity and 19F chemical shift, including reversible fluorescence switching in response to Ag(I) and cysteine
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2021-01-01
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