Getting DNA and RNA out of the dark with 2CNqA: a bright adenine analogue and interbase FRET donor

Author:

Wypijewska del Nogal Anna1ORCID,Füchtbauer Anders F12ORCID,Bood Mattias23ORCID,Nilsson Jesper R1ORCID,Wranne Moa S1ORCID,Sarangamath Sangamesh1,Pfeiffer Pauline1,Rajan Vinoth Sundar1,El-Sagheer Afaf H4ORCID,Dahlén Anders5ORCID,Brown Tom6ORCID,Grøtli Morten2ORCID,Wilhelmsson L Marcus1ORCID

Affiliation:

1. Department of Chemistry and Chemical Engineering, Chalmers University of Technology, Gothenburg SE-412 96, Sweden

2. Department of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg SE-412 96, Sweden

3. Medicinal Chemistry, Research and EarlyDevelopment, Cardiovascular, Renal and Metabolism (CVRM), BioPharmaceuticals R&D, AstraZeneca, Gothenburg, Pepparedsleden 1, Mölndal, SE-431 83, Sweden

4. Chemistry Branch, Faculty of Petroleum and Mining Engineering, Suez University, Suez 43721, Egypt

5. Discovery Sciences, BioPharmaceuticals R&D, AstraZeneca, Gothenburg, Pepparedsleden 1, Mölndal, SE-431 83, Sweden

6. Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford OX1 3TA, UK

Abstract

Abstract With the central role of nucleic acids there is a need for development of fluorophores that facilitate the visualization of processes involving nucleic acids without perturbing their natural properties and behaviour. Here, we incorporate a new analogue of adenine, 2CNqA, into both DNA and RNA, and evaluate its nucleobase-mimicking and internal fluorophore capacities. We find that 2CNqA displays excellent photophysical properties in both nucleic acids, is highly specific for thymine/uracil, and maintains and slightly stabilises the canonical conformations of DNA and RNA duplexes. Moreover, the 2CNqA fluorophore has a quantum yield in single-stranded and duplex DNA ranging from 10% to 44% and 22% to 32%, respectively, and a slightly lower one (average 12%) inside duplex RNA. In combination with a comparatively strong molar absorptivity for this class of compounds, the resulting brightness of 2CNqA inside double-stranded DNA is the highest reported for a fluorescent base analogue. The high, relatively sequence-independent quantum yield in duplexes makes 2CNqA promising as a nucleic acid label and as an interbase Förster resonance energy transfer (FRET) donor. Finally, we report its excellent spectral overlap with the interbase FRET acceptors qAnitro and tCnitro, and demonstrate that these FRET pairs enable conformation studies of DNA and RNA.

Funder

Marie Skłodowska-Curie

Swedish Foundation for Strategic Research

Swedish Research Council

Publisher

Oxford University Press (OUP)

Subject

Genetics

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