
PubReading [141] - Single-molecule fluorescence detection of a tricyclic nucleoside analogue - G. Samaan, B. Purse et al
About this episode
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 3442 1⁄4 20 000 M1 cm1 and Fem,540 1⁄4 0.39 in water, increasing to Fem 1⁄4 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.
DOI: 10.1039/d0sc03903a - 2021
Get every episode summarized
Each time PubReading publishes, we email you a written briefing from the transcript — the topics, who appeared, and any specific claims, with the ad reads skipped.
Email me new episodesFree for 3 shows. No card needed.
Hosts & guests
No transcript yet
This episode has not been transcribed. Request it and it moves to the front of the queue.
More episodes
More from PubReading

PubReading [346] - Transparency Is the Key to Quality - A. Fosang & R. Colbran
PubReading

PubReading [343] - The changing career trajectories of new parents in STEM - E....
PubReading

PubReading [341] - Carbon Nanomaterials (CNMs) in Cancer Therapy- A Database of...
PubReading

PubReading [340] - The application of human tissue for drug discovery and develo...
PubReading