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Encapsulation of Fluorescently Labeled RNAs into Surface-Tethered Vesicles for Single-Molecule FRET Studies in TIRF Microscopy

Authors :
Arluison, Véronique
Wien, Frank
Arluison, V ( Véronique )
Wien, F ( Frank )
Zelger-Paulus, Susann
Hadzic, Mélodie C A S
Sigel, Roland K O; https://orcid.org/0000-0002-1307-7993
Börner, Richard; https://orcid.org/0000-0001-8407-6624
Arluison, Véronique
Wien, Frank
Arluison, V ( Véronique )
Wien, F ( Frank )
Zelger-Paulus, Susann
Hadzic, Mélodie C A S
Sigel, Roland K O; https://orcid.org/0000-0002-1307-7993
Börner, Richard; https://orcid.org/0000-0001-8407-6624
Source :
Zelger-Paulus, Susann; Hadzic, Mélodie C A S; Sigel, Roland K O; Börner, Richard (2020). Encapsulation of Fluorescently Labeled RNAs into Surface-Tethered Vesicles for Single-Molecule FRET Studies in TIRF Microscopy. In: Arluison, Véronique; Wien, Frank. RNA Spectroscopy. New York: Springer, 1-16.
Publication Year :
2020

Abstract

Imaging fluorescently labeled biomolecules on a single-molecule level is a well-established technique to follow intra- and intermolecular processes in time, usually hidden in the ensemble average. The classical approach comprises surface immobilization of the molecule of interest, which increases the risk of restricting the natural behavior due to surface interactions. Encapsulation of such biomolecules into surface-tethered phospholipid vesicles enables to follow one molecule at a time, freely diffusing and without disturbing surface interactions. Further, the encapsulation allows to keep reaction partners (reactants and products) in close proximity and enables higher temperatures otherwise leading to desorption of the direct immobilized biomolecules. Here, we describe a detailed protocol for the encapsulation of a catalytically active RNA starting from surface passivation over RNA encapsulation to data evaluation of single-molecule FRET experiments in TIRF microscopy. We present an optimized procedure that preserves RNA functionality and applies to investigations of, e.g., large ribozymes and RNAs, where direct immobilization is structurally not possible.

Details

Database :
OAIster
Journal :
Zelger-Paulus, Susann; Hadzic, Mélodie C A S; Sigel, Roland K O; Börner, Richard (2020). Encapsulation of Fluorescently Labeled RNAs into Surface-Tethered Vesicles for Single-Molecule FRET Studies in TIRF Microscopy. In: Arluison, Véronique; Wien, Frank. RNA Spectroscopy. New York: Springer, 1-16.
Notes :
application/pdf, info:doi/10.5167/uzh-186965, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1443030502
Document Type :
Electronic Resource