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Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement
Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imaging, and optimization of their photophysical properties underlies improved performance and novel applications. Here we establish a link between photoswitching contrast, one of the key parameters that di...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9804819/ https://www.ncbi.nlm.nih.gov/pubmed/35959919 http://dx.doi.org/10.1002/cphc.202200192 |
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author | Adam, Virgile Hadjidemetriou, Kyprianos Jensen, Nickels Shoeman, Robert L. Woodhouse, Joyce Aquila, Andrew Banneville, Anne‐Sophie Barends, Thomas R. M. Bezchastnov, Victor Boutet, Sébastien Byrdin, Martin Cammarata, Marco Carbajo, Sergio Eleni Christou, Nina Coquelle, Nicolas De la Mora, Eugenio El Khatib, Mariam Moreno Chicano, Tadeo Bruce Doak, R. Fieschi, Franck Foucar, Lutz Glushonkov, Oleksandr Gorel, Alexander Grünbein, Marie Luise Hilpert, Mario Hunter, Mark Kloos, Marco Koglin, Jason E. Lane, Thomas J. Liang, Mengning Mantovanelli, Angela Nass, Karol Nass Kovacs, Gabriela Owada, Shigeki Roome, Christopher M. Schirò, Giorgio Seaberg, Matthew Stricker, Miriam Thépaut, Michel Tono, Kensuke Ueda, Kiyoshi Uriarte, Lucas M. You, Daehyun Zala, Ninon Domratcheva, Tatiana Jakobs, Stefan Sliwa, Michel Schlichting, Ilme Colletier, Jacques‐Philippe Bourgeois, Dominique Weik, Martin |
author_facet | Adam, Virgile Hadjidemetriou, Kyprianos Jensen, Nickels Shoeman, Robert L. Woodhouse, Joyce Aquila, Andrew Banneville, Anne‐Sophie Barends, Thomas R. M. Bezchastnov, Victor Boutet, Sébastien Byrdin, Martin Cammarata, Marco Carbajo, Sergio Eleni Christou, Nina Coquelle, Nicolas De la Mora, Eugenio El Khatib, Mariam Moreno Chicano, Tadeo Bruce Doak, R. Fieschi, Franck Foucar, Lutz Glushonkov, Oleksandr Gorel, Alexander Grünbein, Marie Luise Hilpert, Mario Hunter, Mark Kloos, Marco Koglin, Jason E. Lane, Thomas J. Liang, Mengning Mantovanelli, Angela Nass, Karol Nass Kovacs, Gabriela Owada, Shigeki Roome, Christopher M. Schirò, Giorgio Seaberg, Matthew Stricker, Miriam Thépaut, Michel Tono, Kensuke Ueda, Kiyoshi Uriarte, Lucas M. You, Daehyun Zala, Ninon Domratcheva, Tatiana Jakobs, Stefan Sliwa, Michel Schlichting, Ilme Colletier, Jacques‐Philippe Bourgeois, Dominique Weik, Martin |
author_sort | Adam, Virgile |
collection | PubMed |
description | Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imaging, and optimization of their photophysical properties underlies improved performance and novel applications. Here we establish a link between photoswitching contrast, one of the key parameters that dictate the achievable resolution in nanoscopy applications, and chromophore conformation in the non‐fluorescent state of rsEGFP2, a widely employed label in REversible Saturable OpticaL Fluorescence Transitions (RESOLFT) microscopy. Upon illumination, the cis chromophore of rsEGFP2 isomerizes to two distinct off‐state conformations, trans1 and trans2, located on either side of the V151 side chain. Reducing or enlarging the side chain at this position (V151A and V151L variants) leads to single off‐state conformations that exhibit higher and lower switching contrast, respectively, compared to the rsEGFP2 parent. The combination of structural information obtained by serial femtosecond crystallography with high‐level quantum chemical calculations and with spectroscopic and photophysical data determined in vitro suggests that the changes in switching contrast arise from blue‐ and red‐shifts of the absorption bands associated to trans1 and trans2, respectively. Thus, due to elimination of trans2, the V151A variants of rsEGFP2 and its superfolding variant rsFolder2 display a more than two‐fold higher switching contrast than their respective parent proteins, both in vitro and in E. coli cells. The application of the rsFolder2‐V151A variant is demonstrated in RESOLFT nanoscopy. Our study rationalizes the connection between structural and photophysical chromophore properties and suggests a means to rationally improve fluorescent proteins for nanoscopy applications. |
format | Online Article Text |
id | pubmed-9804819 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-98048192023-01-06 Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement Adam, Virgile Hadjidemetriou, Kyprianos Jensen, Nickels Shoeman, Robert L. Woodhouse, Joyce Aquila, Andrew Banneville, Anne‐Sophie Barends, Thomas R. M. Bezchastnov, Victor Boutet, Sébastien Byrdin, Martin Cammarata, Marco Carbajo, Sergio Eleni Christou, Nina Coquelle, Nicolas De la Mora, Eugenio El Khatib, Mariam Moreno Chicano, Tadeo Bruce Doak, R. Fieschi, Franck Foucar, Lutz Glushonkov, Oleksandr Gorel, Alexander Grünbein, Marie Luise Hilpert, Mario Hunter, Mark Kloos, Marco Koglin, Jason E. Lane, Thomas J. Liang, Mengning Mantovanelli, Angela Nass, Karol Nass Kovacs, Gabriela Owada, Shigeki Roome, Christopher M. Schirò, Giorgio Seaberg, Matthew Stricker, Miriam Thépaut, Michel Tono, Kensuke Ueda, Kiyoshi Uriarte, Lucas M. You, Daehyun Zala, Ninon Domratcheva, Tatiana Jakobs, Stefan Sliwa, Michel Schlichting, Ilme Colletier, Jacques‐Philippe Bourgeois, Dominique Weik, Martin Chemphyschem Research Articles Reversibly photoswitchable fluorescent proteins are essential markers for advanced biological imaging, and optimization of their photophysical properties underlies improved performance and novel applications. Here we establish a link between photoswitching contrast, one of the key parameters that dictate the achievable resolution in nanoscopy applications, and chromophore conformation in the non‐fluorescent state of rsEGFP2, a widely employed label in REversible Saturable OpticaL Fluorescence Transitions (RESOLFT) microscopy. Upon illumination, the cis chromophore of rsEGFP2 isomerizes to two distinct off‐state conformations, trans1 and trans2, located on either side of the V151 side chain. Reducing or enlarging the side chain at this position (V151A and V151L variants) leads to single off‐state conformations that exhibit higher and lower switching contrast, respectively, compared to the rsEGFP2 parent. The combination of structural information obtained by serial femtosecond crystallography with high‐level quantum chemical calculations and with spectroscopic and photophysical data determined in vitro suggests that the changes in switching contrast arise from blue‐ and red‐shifts of the absorption bands associated to trans1 and trans2, respectively. Thus, due to elimination of trans2, the V151A variants of rsEGFP2 and its superfolding variant rsFolder2 display a more than two‐fold higher switching contrast than their respective parent proteins, both in vitro and in E. coli cells. The application of the rsFolder2‐V151A variant is demonstrated in RESOLFT nanoscopy. Our study rationalizes the connection between structural and photophysical chromophore properties and suggests a means to rationally improve fluorescent proteins for nanoscopy applications. John Wiley and Sons Inc. 2022-08-12 2022-10-06 /pmc/articles/PMC9804819/ /pubmed/35959919 http://dx.doi.org/10.1002/cphc.202200192 Text en © 2022 The Authors. ChemPhysChem published by Wiley-VCH GmbH https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes. |
spellingShingle | Research Articles Adam, Virgile Hadjidemetriou, Kyprianos Jensen, Nickels Shoeman, Robert L. Woodhouse, Joyce Aquila, Andrew Banneville, Anne‐Sophie Barends, Thomas R. M. Bezchastnov, Victor Boutet, Sébastien Byrdin, Martin Cammarata, Marco Carbajo, Sergio Eleni Christou, Nina Coquelle, Nicolas De la Mora, Eugenio El Khatib, Mariam Moreno Chicano, Tadeo Bruce Doak, R. Fieschi, Franck Foucar, Lutz Glushonkov, Oleksandr Gorel, Alexander Grünbein, Marie Luise Hilpert, Mario Hunter, Mark Kloos, Marco Koglin, Jason E. Lane, Thomas J. Liang, Mengning Mantovanelli, Angela Nass, Karol Nass Kovacs, Gabriela Owada, Shigeki Roome, Christopher M. Schirò, Giorgio Seaberg, Matthew Stricker, Miriam Thépaut, Michel Tono, Kensuke Ueda, Kiyoshi Uriarte, Lucas M. You, Daehyun Zala, Ninon Domratcheva, Tatiana Jakobs, Stefan Sliwa, Michel Schlichting, Ilme Colletier, Jacques‐Philippe Bourgeois, Dominique Weik, Martin Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement |
title | Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement
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title_full | Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement
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title_fullStr | Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement
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title_full_unstemmed | Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement
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title_short | Rational Control of Off‐State Heterogeneity in a Photoswitchable Fluorescent Protein Provides Switching Contrast Enhancement
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title_sort | rational control of off‐state heterogeneity in a photoswitchable fluorescent protein provides switching contrast enhancement |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9804819/ https://www.ncbi.nlm.nih.gov/pubmed/35959919 http://dx.doi.org/10.1002/cphc.202200192 |
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