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Single-molecule fluorescence detection of a tricyclic nucleoside analogue.
Samaan, George N; Wyllie, Mckenzie K; Cizmic, Julian M; Needham, Lisa-Maria; Nobis, David; Ngo, Katrina; Andersen, Susan; Magennis, Steven W; Lee, Steven F; Purse, Byron W.
Afiliação
  • Samaan GN; Department of Chemistry and Biochemistry and the Viral Information Institute, San Diego State University San Diego CA 92182 USA bpurse@sdsu.edu.
  • Wyllie MK; Department of Chemistry and Biochemistry and the Viral Information Institute, San Diego State University San Diego CA 92182 USA bpurse@sdsu.edu.
  • Cizmic JM; Department of Chemistry and Biochemistry and the Viral Information Institute, San Diego State University San Diego CA 92182 USA bpurse@sdsu.edu.
  • Needham LM; University of Cambridge, Chemistry Department Lensfield Road Cambridge CB2 1EW UK.
  • Nobis D; School of Chemistry, University of Glasgow University Avenue Glasgow G12 8QQ UK.
  • Ngo K; Department of Chemistry and Biochemistry and the Viral Information Institute, San Diego State University San Diego CA 92182 USA bpurse@sdsu.edu.
  • Andersen S; Department of Chemistry and Biochemistry and the Viral Information Institute, San Diego State University San Diego CA 92182 USA bpurse@sdsu.edu.
  • Magennis SW; School of Chemistry, University of Glasgow University Avenue Glasgow G12 8QQ UK.
  • Lee SF; University of Cambridge, Chemistry Department Lensfield Road Cambridge CB2 1EW UK.
  • Purse BW; Department of Chemistry and Biochemistry and the Viral Information Institute, San Diego State University San Diego CA 92182 USA bpurse@sdsu.edu.
Chem Sci ; 12(7): 2623-2628, 2020 Dec 28.
Article em En | MEDLINE | ID: mdl-34164030
ABSTRACT
Fluorescent nucleobase surrogates capable of Watson-Crick hydrogen bonding are essential probes of nucleic acid structure and dynamics, but their limited brightness and short absorption and emission wavelengths have rendered them unsuitable for single-molecule detection. Aiming to improve on these properties, we designed a new tricyclic pyrimidine nucleoside analogue with a push-pull conjugated system and synthesized it in seven sequential steps. The resulting C-linked 8-(diethylamino)benzo[b][1,8]naphthyridin-2(1H)-one nucleoside, which we name ABN, exhibits ε 442 = 20 000 M-1 cm-1 and Φ em,540 = 0.39 in water, increasing to Φ em = 0.50-0.53 when base paired with adenine in duplex DNA oligonucleotides. Single-molecule fluorescence measurements of ABN using both one-photon and two-photon excitation demonstrate its excellent photostability and indicate that the nucleoside is present to > 95% in a bright state with count rates of at least 15 kHz per molecule. This new fluorescent nucleobase analogue, which, in duplex DNA, is the brightest and most red-shifted known, is the first to offer robust and accessible single-molecule fluorescence detection capabilities.

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies Idioma: En Ano de publicação: 2020 Tipo de documento: Article