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FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity

Genetically encoded calcium indicators (GECIs) have become a widespread tool for the visualization of neuronal activity. As compared to popular GCaMP GECIs, the FGCaMP indicator benefits from calmodulin and M13-peptide from the fungi Aspergillus niger and Aspergillus fumigatus, which prevent its int...

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Autores principales: Barykina, Natalia V., Sotskov, Vladimir P., Gruzdeva, Anna M., Wu, You Kure, Portugues, Ruben, Subach, Oksana M., Chefanova, Elizaveta S., Plusnin, Viktor V., Ivashkina, Olga I., Anokhin, Konstantin V., Vlaskina, Anna V., Korzhenevskiy, Dmitry A., Nikolaeva, Alena Y., Boyko, Konstantin M., Rakitina, Tatiana V., Varizhuk, Anna M., Pozmogova, Galina E., Subach, Fedor V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7215472/
https://www.ncbi.nlm.nih.gov/pubmed/32344594
http://dx.doi.org/10.3390/ijms21083012
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author Barykina, Natalia V.
Sotskov, Vladimir P.
Gruzdeva, Anna M.
Wu, You Kure
Portugues, Ruben
Subach, Oksana M.
Chefanova, Elizaveta S.
Plusnin, Viktor V.
Ivashkina, Olga I.
Anokhin, Konstantin V.
Vlaskina, Anna V.
Korzhenevskiy, Dmitry A.
Nikolaeva, Alena Y.
Boyko, Konstantin M.
Rakitina, Tatiana V.
Varizhuk, Anna M.
Pozmogova, Galina E.
Subach, Fedor V.
author_facet Barykina, Natalia V.
Sotskov, Vladimir P.
Gruzdeva, Anna M.
Wu, You Kure
Portugues, Ruben
Subach, Oksana M.
Chefanova, Elizaveta S.
Plusnin, Viktor V.
Ivashkina, Olga I.
Anokhin, Konstantin V.
Vlaskina, Anna V.
Korzhenevskiy, Dmitry A.
Nikolaeva, Alena Y.
Boyko, Konstantin M.
Rakitina, Tatiana V.
Varizhuk, Anna M.
Pozmogova, Galina E.
Subach, Fedor V.
author_sort Barykina, Natalia V.
collection PubMed
description Genetically encoded calcium indicators (GECIs) have become a widespread tool for the visualization of neuronal activity. As compared to popular GCaMP GECIs, the FGCaMP indicator benefits from calmodulin and M13-peptide from the fungi Aspergillus niger and Aspergillus fumigatus, which prevent its interaction with the intracellular environment. However, FGCaMP exhibits a two-phase fluorescence behavior with the variation of calcium ion concentration, has moderate sensitivity in neurons (as compared to the GCaMP6s indicator), and has not been fully characterized in vitro and in vivo. To address these limitations, we developed an enhanced version of FGCaMP, called FGCaMP7. FGCaMP7 preserves the ratiometric phenotype of FGCaMP, with a 3.1-fold larger ratiometric dynamic range in vitro. FGCaMP7 demonstrates 2.7- and 8.7-fold greater photostability compared to mEGFP and mTagBFP2 fluorescent proteins in vitro, respectively. The ratiometric response of FGCaMP7 is 1.6- and 1.4-fold higher, compared to the intensiometric response of GCaMP6s, in non-stimulated and stimulated neuronal cultures, respectively. We reveal the inertness of FGCaMP7 to the intracellular environment of HeLa cells using its truncated version with a deleted M13-like peptide; in contrast to the similarly truncated variant of GCaMP6s. We characterize the crystal structure of the parental FGCaMP indicator. Finally, we test the in vivo performance of FGCaMP7 in mouse brain using a two-photon microscope and an NVista miniscope; and in zebrafish using two-color ratiometric confocal imaging.
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spelling pubmed-72154722020-05-22 FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity Barykina, Natalia V. Sotskov, Vladimir P. Gruzdeva, Anna M. Wu, You Kure Portugues, Ruben Subach, Oksana M. Chefanova, Elizaveta S. Plusnin, Viktor V. Ivashkina, Olga I. Anokhin, Konstantin V. Vlaskina, Anna V. Korzhenevskiy, Dmitry A. Nikolaeva, Alena Y. Boyko, Konstantin M. Rakitina, Tatiana V. Varizhuk, Anna M. Pozmogova, Galina E. Subach, Fedor V. Int J Mol Sci Article Genetically encoded calcium indicators (GECIs) have become a widespread tool for the visualization of neuronal activity. As compared to popular GCaMP GECIs, the FGCaMP indicator benefits from calmodulin and M13-peptide from the fungi Aspergillus niger and Aspergillus fumigatus, which prevent its interaction with the intracellular environment. However, FGCaMP exhibits a two-phase fluorescence behavior with the variation of calcium ion concentration, has moderate sensitivity in neurons (as compared to the GCaMP6s indicator), and has not been fully characterized in vitro and in vivo. To address these limitations, we developed an enhanced version of FGCaMP, called FGCaMP7. FGCaMP7 preserves the ratiometric phenotype of FGCaMP, with a 3.1-fold larger ratiometric dynamic range in vitro. FGCaMP7 demonstrates 2.7- and 8.7-fold greater photostability compared to mEGFP and mTagBFP2 fluorescent proteins in vitro, respectively. The ratiometric response of FGCaMP7 is 1.6- and 1.4-fold higher, compared to the intensiometric response of GCaMP6s, in non-stimulated and stimulated neuronal cultures, respectively. We reveal the inertness of FGCaMP7 to the intracellular environment of HeLa cells using its truncated version with a deleted M13-like peptide; in contrast to the similarly truncated variant of GCaMP6s. We characterize the crystal structure of the parental FGCaMP indicator. Finally, we test the in vivo performance of FGCaMP7 in mouse brain using a two-photon microscope and an NVista miniscope; and in zebrafish using two-color ratiometric confocal imaging. MDPI 2020-04-24 /pmc/articles/PMC7215472/ /pubmed/32344594 http://dx.doi.org/10.3390/ijms21083012 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Barykina, Natalia V.
Sotskov, Vladimir P.
Gruzdeva, Anna M.
Wu, You Kure
Portugues, Ruben
Subach, Oksana M.
Chefanova, Elizaveta S.
Plusnin, Viktor V.
Ivashkina, Olga I.
Anokhin, Konstantin V.
Vlaskina, Anna V.
Korzhenevskiy, Dmitry A.
Nikolaeva, Alena Y.
Boyko, Konstantin M.
Rakitina, Tatiana V.
Varizhuk, Anna M.
Pozmogova, Galina E.
Subach, Fedor V.
FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity
title FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity
title_full FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity
title_fullStr FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity
title_full_unstemmed FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity
title_short FGCaMP7, an Improved Version of Fungi-Based Ratiometric Calcium Indicator for In Vivo Visualization of Neuronal Activity
title_sort fgcamp7, an improved version of fungi-based ratiometric calcium indicator for in vivo visualization of neuronal activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7215472/
https://www.ncbi.nlm.nih.gov/pubmed/32344594
http://dx.doi.org/10.3390/ijms21083012
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