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April 29, 2026Angewandte Chemie International Edition0 citationsOpen Access

BNB/NBN‐Phenalenyl‐2'‐deoxyuridines as a Fluorophore–Quencher Pair in DNA

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SLSarah LutzHNHermann NeitzMMMichael Müller

Key Points

  • The aim is to study the interactions of BNB- and NBN-doped phenalenyl nucleosides as a donor-acceptor pair in DNA.
  • Introduced BNB- and NBN-phenalenyl nucleosides into DNA using phosphoramidite chemistry.
  • Evaluated performance in a toehold-mediated strand displacement experiment.
  • Assessed Förster resonance energy transfer (FRET) between chromophores.
  • Demonstrated effective energy transfer leading to BNB-phenalenyl fluorescence quenching.
  • Established that the DNA duplex effectively controls chromophore arrangement.
  • Indicated the potential for innovative DNA-based applications.

Abstract

Deoxyribonucleic acid (DNA) enables the precise arrangement and positioning of chromophores in order to study their interactions, leading, for example, to through-space energy transfer processes. BNB- and NBN-doped phenalenyls are electronically complementary fluorophores that are neutral BN/CC isosteres of the phenalenyl cation and anion, respectively. Herein, we present a pair of BNB- and NBN-doped phenalenyl-extended nucleosides, which we introduced into DNA via phosphoramidite chemistry. The two chromophores act as a donor-acceptor pair in a Förster resonance energy transfer (FRET) process, which results in the quenching of the BNB-phenalenyl fluorescence due to the nonradiative decay of the charge transfer (CT) state of the NBN-phenalenyl acceptor in an aqueous environment. The DNA duplex serves as a supramolecular scaffold to control the arrangement of the interacting BNB- and NBN-doped chromophores. The performance of the fluorophore-quencher pair was evaluated in a toehold-mediated strand displacement (TMSD) experiment, demonstrating its potential for DNA-based applications.

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Cite This Study

Lutz et al. (2026) studied this question.

synapsesocial.com/papers/69f19f9cedf4b4682480668fhttps://doi.org/10.1002/anie.202524671
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