FRET-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells

Single molecule tracking of fluorescent proteins in live cells is temporally limited by fluorophore photobleaching. Here the authors show using fluorophore pairs that FRET competes with photobleaching to improve photostability and allow longer-term tracking of both single proteins and complexes.

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Autores principales: Srinjan Basu, Lisa-Maria Needham, David Lando, Edward J. R. Taylor, Kai J. Wohlfahrt, Devina Shah, Wayne Boucher, Yi Lei Tan, Lawrence E. Bates, Olga Tkachenko, Julie Cramard, B. Christoffer Lagerholm, Christian Eggeling, Brian Hendrich, Dave Klenerman, Steven F. Lee, Ernest D. Laue
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/4ba0bd5ae2024d44b50386dc802df3dc
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spelling oai:doaj.org-article:4ba0bd5ae2024d44b50386dc802df3dc2021-12-02T14:38:47ZFRET-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells10.1038/s41467-018-04486-02041-1723https://doaj.org/article/4ba0bd5ae2024d44b50386dc802df3dc2018-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-04486-0https://doaj.org/toc/2041-1723Single molecule tracking of fluorescent proteins in live cells is temporally limited by fluorophore photobleaching. Here the authors show using fluorophore pairs that FRET competes with photobleaching to improve photostability and allow longer-term tracking of both single proteins and complexes.Srinjan BasuLisa-Maria NeedhamDavid LandoEdward J. R. TaylorKai J. WohlfahrtDevina ShahWayne BoucherYi Lei TanLawrence E. BatesOlga TkachenkoJulie CramardB. Christoffer LagerholmChristian EggelingBrian HendrichDave KlenermanSteven F. LeeErnest D. LaueNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-14 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Srinjan Basu
Lisa-Maria Needham
David Lando
Edward J. R. Taylor
Kai J. Wohlfahrt
Devina Shah
Wayne Boucher
Yi Lei Tan
Lawrence E. Bates
Olga Tkachenko
Julie Cramard
B. Christoffer Lagerholm
Christian Eggeling
Brian Hendrich
Dave Klenerman
Steven F. Lee
Ernest D. Laue
FRET-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells
description Single molecule tracking of fluorescent proteins in live cells is temporally limited by fluorophore photobleaching. Here the authors show using fluorophore pairs that FRET competes with photobleaching to improve photostability and allow longer-term tracking of both single proteins and complexes.
format article
author Srinjan Basu
Lisa-Maria Needham
David Lando
Edward J. R. Taylor
Kai J. Wohlfahrt
Devina Shah
Wayne Boucher
Yi Lei Tan
Lawrence E. Bates
Olga Tkachenko
Julie Cramard
B. Christoffer Lagerholm
Christian Eggeling
Brian Hendrich
Dave Klenerman
Steven F. Lee
Ernest D. Laue
author_facet Srinjan Basu
Lisa-Maria Needham
David Lando
Edward J. R. Taylor
Kai J. Wohlfahrt
Devina Shah
Wayne Boucher
Yi Lei Tan
Lawrence E. Bates
Olga Tkachenko
Julie Cramard
B. Christoffer Lagerholm
Christian Eggeling
Brian Hendrich
Dave Klenerman
Steven F. Lee
Ernest D. Laue
author_sort Srinjan Basu
title FRET-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells
title_short FRET-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells
title_full FRET-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells
title_fullStr FRET-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells
title_full_unstemmed FRET-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells
title_sort fret-enhanced photostability allows improved single-molecule tracking of proteins and protein complexes in live mammalian cells
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/4ba0bd5ae2024d44b50386dc802df3dc
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