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Development of a green reversibly photoswitchable variant of Eos fluorescent protein with fixation resistance

Superresolution microscopy determines the localization of fluorescent proteins with high precision, beyond the diffraction limit of light. Superresolution microscopic techniques include photoactivated localization microscopy (PALM), which can localize a single protein by the stochastic activation of...

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Autores principales: Osuga, Mitsuo, Nishimura, Tamako, Suetsugu, Shiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8693962/
https://www.ncbi.nlm.nih.gov/pubmed/34495704
http://dx.doi.org/10.1091/mbc.E21-01-0044
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author Osuga, Mitsuo
Nishimura, Tamako
Suetsugu, Shiro
author_facet Osuga, Mitsuo
Nishimura, Tamako
Suetsugu, Shiro
author_sort Osuga, Mitsuo
collection PubMed
description Superresolution microscopy determines the localization of fluorescent proteins with high precision, beyond the diffraction limit of light. Superresolution microscopic techniques include photoactivated localization microscopy (PALM), which can localize a single protein by the stochastic activation of its fluorescence. In the determination of single-molecule localization by PALM, the number of molecules that can be analyzed per image is limited. Thus, many images are required to reconstruct the localization of numerous molecules in the cell. However, most fluorescent proteins lose their fluorescence upon fixation. Here, we combined the amino acid substitutions of two Eos protein derivatives, Skylan-S and mEos4b, which are a green reversibly photoswitchable fluorescent protein (RSFP) and a fixation-resistant green-to-red photoconvertible fluorescent protein, respectively, resulting in the fixation-resistant Skylan-S (frSkylan-S), a green RSFP. The frSkylan-S protein is inactivated by excitation light and reactivated by irradiation with violet light, and retained more fluorescence after aldehyde fixation than Skylan-S. The qualities of the frSkylan-S fusion proteins were sufficiently high in PALM observations, as examined using α-tubulin and clathrin light chain. Furthermore, frSkylan-S can be combined with antibody staining for multicolor imaging. Therefore, frSkylan-S is a green fluorescent protein suitable for PALM imaging under aldehyde-fixation conditions.
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spelling pubmed-86939622022-01-31 Development of a green reversibly photoswitchable variant of Eos fluorescent protein with fixation resistance Osuga, Mitsuo Nishimura, Tamako Suetsugu, Shiro Mol Biol Cell Brief Reports Superresolution microscopy determines the localization of fluorescent proteins with high precision, beyond the diffraction limit of light. Superresolution microscopic techniques include photoactivated localization microscopy (PALM), which can localize a single protein by the stochastic activation of its fluorescence. In the determination of single-molecule localization by PALM, the number of molecules that can be analyzed per image is limited. Thus, many images are required to reconstruct the localization of numerous molecules in the cell. However, most fluorescent proteins lose their fluorescence upon fixation. Here, we combined the amino acid substitutions of two Eos protein derivatives, Skylan-S and mEos4b, which are a green reversibly photoswitchable fluorescent protein (RSFP) and a fixation-resistant green-to-red photoconvertible fluorescent protein, respectively, resulting in the fixation-resistant Skylan-S (frSkylan-S), a green RSFP. The frSkylan-S protein is inactivated by excitation light and reactivated by irradiation with violet light, and retained more fluorescence after aldehyde fixation than Skylan-S. The qualities of the frSkylan-S fusion proteins were sufficiently high in PALM observations, as examined using α-tubulin and clathrin light chain. Furthermore, frSkylan-S can be combined with antibody staining for multicolor imaging. Therefore, frSkylan-S is a green fluorescent protein suitable for PALM imaging under aldehyde-fixation conditions. The American Society for Cell Biology 2021-11-01 /pmc/articles/PMC8693962/ /pubmed/34495704 http://dx.doi.org/10.1091/mbc.E21-01-0044 Text en © 2021 Osuga et al. “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society for Cell Biology. https://creativecommons.org/licenses/by-nc-sa/3.0/This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License.
spellingShingle Brief Reports
Osuga, Mitsuo
Nishimura, Tamako
Suetsugu, Shiro
Development of a green reversibly photoswitchable variant of Eos fluorescent protein with fixation resistance
title Development of a green reversibly photoswitchable variant of Eos fluorescent protein with fixation resistance
title_full Development of a green reversibly photoswitchable variant of Eos fluorescent protein with fixation resistance
title_fullStr Development of a green reversibly photoswitchable variant of Eos fluorescent protein with fixation resistance
title_full_unstemmed Development of a green reversibly photoswitchable variant of Eos fluorescent protein with fixation resistance
title_short Development of a green reversibly photoswitchable variant of Eos fluorescent protein with fixation resistance
title_sort development of a green reversibly photoswitchable variant of eos fluorescent protein with fixation resistance
topic Brief Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8693962/
https://www.ncbi.nlm.nih.gov/pubmed/34495704
http://dx.doi.org/10.1091/mbc.E21-01-0044
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