An automated single-molecule FRET platform for high-content, multiwell plate screening of biomolecular conformations and dynamics

Journal Article (2023)
Author(s)

Andreas Hartmann (Technische Universität Dresden)

K. Sreenivasa (Technische Universität Dresden)

Mathias Schenkel (Technische Universität Dresden)

Neharika Chamachi (Technische Universität Dresden)

Philipp Schake (Technische Universität Dresden)

Georg Krainer (Technische Universität Dresden, University of Cambridge)

Michael Schlierf (Technische Universität Dresden)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1038/s41467-023-42232-3
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Publication Year
2023
Language
English
Affiliation
External organisation
Issue number
1
Volume number
14

Abstract

Single-molecule FRET (smFRET) has become a versatile tool for probing the structure and functional dynamics of biomolecular systems, and is extensively used to address questions ranging from biomolecular folding to drug discovery. Confocal smFRET measurements are amongst the widely used smFRET assays and are typically performed in a single-well format. Thus, sampling of many experimental parameters is laborious and time consuming. To address this challenge, we extend here the capabilities of confocal smFRET beyond single-well measurements by integrating a multiwell plate functionality to allow for continuous and automated smFRET measurements. We demonstrate the broad applicability of the multiwell plate assay towards DNA hairpin dynamics, protein folding, competitive and cooperative protein–DNA interactions, and drug-discovery, revealing insights that would be very difficult to achieve with conventional single-well format measurements. For the adaptation into existing instrumentations, we provide a detailed guide and open-source acquisition and analysis software.

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