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Peptide-Based Probes with an Artificial Anion-Binding Motif for Direct Fluorescence "Switch-On" Detection of Nucleic Acid in Cells. | LitMetric

AI Article Synopsis

  • The text describes two new peptide-based fluorescence probes (1 and 2) specifically designed for detecting double-stranded DNA (ds-DNA) at physiological pH.
  • These probes incorporate different fluorophores and identical peptide arms that bind to DNA, showing a "switch-on" fluorescence response, which varies depending on the DNA's base composition.
  • Probe 1 can be used for imaging nuclear DNA in cells due to its low cytotoxicity and interacts with ds-DNA through a combination of methods, while probe 2 mainly targets the outer surface of DNA/RNA.

Article Abstract

This work reports two new peptide-based fluorescence probes (1 and 2) for the detection of ds-DNA at physiological pH. Probes 1 and 2 contain a fluorophore, either amino-naphthalimide or diethyl-aminocoumarin, respectively, and two identical peptide arms each equipped with a guanidiniocarbonylpyrrole (GCP) anion-binding motif. These probes show "switch-on" fluorescence response upon binding to ds-DNA, whereby they can differentiate between various types of polynucleotides. For instance, they exhibit more pronounced fluorescence response for AT-rich polynucleotides than GC-rich polynucleotides, and both give only negligible response to ds-RNA. The fluorimetric response of 1 is proportional to the AT-basepair content in DNA, whereas the fluorescence of 2 is sensitive to the secondary structure of the polynucleotide. Fluorescence experiments, thermal melting experiments and circular dichroism studies suggest that 1 interacts with ds-DNA in a combined intercalation and minor groove binding, whereas 2 interacts mainly with the outer surface of DNA/RNA. As 1 and 2 have a very low cytotoxicity, 1 can be applied for the imaging of nuclear DNA in cells.

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Source
http://dx.doi.org/10.1002/chem.201703813DOI Listing

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