Cargando…

Stealth Fluorescence Labeling for Live Microscopy Imaging of mRNA Delivery

[Image: see text] Methods for tracking RNA inside living cells without perturbing their natural interactions and functions are critical within biology and, in particular, to facilitate studies of therapeutic RNA delivery. We present a stealth labeling approach that can efficiently, and with high fid...

Descripción completa

Detalles Bibliográficos
Autores principales: Baladi, Tom, Nilsson, Jesper R., Gallud, Audrey, Celauro, Emanuele, Gasse, Cécile, Levi-Acobas, Fabienne, Sarac, Ivo, Hollenstein, Marcel R., Dahlén, Anders, Esbjörner, Elin K., Wilhelmsson, L. Marcus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8154517/
https://www.ncbi.nlm.nih.gov/pubmed/33797236
http://dx.doi.org/10.1021/jacs.1c00014
_version_ 1783699032855543808
author Baladi, Tom
Nilsson, Jesper R.
Gallud, Audrey
Celauro, Emanuele
Gasse, Cécile
Levi-Acobas, Fabienne
Sarac, Ivo
Hollenstein, Marcel R.
Dahlén, Anders
Esbjörner, Elin K.
Wilhelmsson, L. Marcus
author_facet Baladi, Tom
Nilsson, Jesper R.
Gallud, Audrey
Celauro, Emanuele
Gasse, Cécile
Levi-Acobas, Fabienne
Sarac, Ivo
Hollenstein, Marcel R.
Dahlén, Anders
Esbjörner, Elin K.
Wilhelmsson, L. Marcus
author_sort Baladi, Tom
collection PubMed
description [Image: see text] Methods for tracking RNA inside living cells without perturbing their natural interactions and functions are critical within biology and, in particular, to facilitate studies of therapeutic RNA delivery. We present a stealth labeling approach that can efficiently, and with high fidelity, generate RNA transcripts, through enzymatic incorporation of the triphosphate of tC(O), a fluorescent tricyclic cytosine analogue. We demonstrate this by incorporation of tC(O) in up to 100% of the natural cytosine positions of a 1.2 kb mRNA encoding for the histone H2B fused to GFP (H2B:GFP). Spectroscopic characterization of this mRNA shows that the incorporation rate of tC(O) is similar to cytosine, which allows for efficient labeling and controlled tuning of labeling ratios for different applications. Using live cell confocal microscopy and flow cytometry, we show that the tC(O)-labeled mRNA is efficiently translated into H2B:GFP inside human cells. Hence, we not only develop the use of fluorescent base analogue labeling of nucleic acids in live-cell microscopy but also, importantly, show that the resulting transcript is translated into the correct protein. Moreover, the spectral properties of our transcripts and their translation product allow for their straightforward, simultaneous visualization in live cells. Finally, we find that chemically transfected tC(O)-labeled RNA, unlike a state-of-the-art fluorescently labeled RNA, gives rise to expression of a similar amount of protein as its natural counterpart, hence representing a methodology for studying natural, unperturbed processing of mRNA used in RNA therapeutics and in vaccines, like the ones developed against SARS-CoV-2.
format Online
Article
Text
id pubmed-8154517
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-81545172021-05-27 Stealth Fluorescence Labeling for Live Microscopy Imaging of mRNA Delivery Baladi, Tom Nilsson, Jesper R. Gallud, Audrey Celauro, Emanuele Gasse, Cécile Levi-Acobas, Fabienne Sarac, Ivo Hollenstein, Marcel R. Dahlén, Anders Esbjörner, Elin K. Wilhelmsson, L. Marcus J Am Chem Soc [Image: see text] Methods for tracking RNA inside living cells without perturbing their natural interactions and functions are critical within biology and, in particular, to facilitate studies of therapeutic RNA delivery. We present a stealth labeling approach that can efficiently, and with high fidelity, generate RNA transcripts, through enzymatic incorporation of the triphosphate of tC(O), a fluorescent tricyclic cytosine analogue. We demonstrate this by incorporation of tC(O) in up to 100% of the natural cytosine positions of a 1.2 kb mRNA encoding for the histone H2B fused to GFP (H2B:GFP). Spectroscopic characterization of this mRNA shows that the incorporation rate of tC(O) is similar to cytosine, which allows for efficient labeling and controlled tuning of labeling ratios for different applications. Using live cell confocal microscopy and flow cytometry, we show that the tC(O)-labeled mRNA is efficiently translated into H2B:GFP inside human cells. Hence, we not only develop the use of fluorescent base analogue labeling of nucleic acids in live-cell microscopy but also, importantly, show that the resulting transcript is translated into the correct protein. Moreover, the spectral properties of our transcripts and their translation product allow for their straightforward, simultaneous visualization in live cells. Finally, we find that chemically transfected tC(O)-labeled RNA, unlike a state-of-the-art fluorescently labeled RNA, gives rise to expression of a similar amount of protein as its natural counterpart, hence representing a methodology for studying natural, unperturbed processing of mRNA used in RNA therapeutics and in vaccines, like the ones developed against SARS-CoV-2. American Chemical Society 2021-04-02 2021-04-14 /pmc/articles/PMC8154517/ /pubmed/33797236 http://dx.doi.org/10.1021/jacs.1c00014 Text en © 2021 The Authors. Published by American Chemical Society Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Baladi, Tom
Nilsson, Jesper R.
Gallud, Audrey
Celauro, Emanuele
Gasse, Cécile
Levi-Acobas, Fabienne
Sarac, Ivo
Hollenstein, Marcel R.
Dahlén, Anders
Esbjörner, Elin K.
Wilhelmsson, L. Marcus
Stealth Fluorescence Labeling for Live Microscopy Imaging of mRNA Delivery
title Stealth Fluorescence Labeling for Live Microscopy Imaging of mRNA Delivery
title_full Stealth Fluorescence Labeling for Live Microscopy Imaging of mRNA Delivery
title_fullStr Stealth Fluorescence Labeling for Live Microscopy Imaging of mRNA Delivery
title_full_unstemmed Stealth Fluorescence Labeling for Live Microscopy Imaging of mRNA Delivery
title_short Stealth Fluorescence Labeling for Live Microscopy Imaging of mRNA Delivery
title_sort stealth fluorescence labeling for live microscopy imaging of mrna delivery
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8154517/
https://www.ncbi.nlm.nih.gov/pubmed/33797236
http://dx.doi.org/10.1021/jacs.1c00014
work_keys_str_mv AT baladitom stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT nilssonjesperr stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT galludaudrey stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT celauroemanuele stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT gassececile stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT leviacobasfabienne stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT saracivo stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT hollensteinmarcelr stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT dahlenanders stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT esbjornerelink stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery
AT wilhelmssonlmarcus stealthfluorescencelabelingforlivemicroscopyimagingofmrnadelivery