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A new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites

Genetically encoded calcium indicators (GECIs) are mainly represented by two- or one-fluorophore-based sensors. One type of two-fluorophore-based sensor, carrying Opsanus troponin C (TnC) as the Ca(2+)-binding moiety, has two binding sites for calcium ions, providing a linear response to calcium ion...

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Autores principales: Barykina, Natalia V., Subach, Oksana M., Doronin, Danila A., Sotskov, Vladimir P., Roshchina, Marina A., Kunitsyna, Tatiana A., Malyshev, Aleksey Y., Smirnov, Ivan V., Azieva, Asya M., Sokolov, Ilya S., Piatkevich, Kiryl D., Burtsev, Mikhail S., Varizhuk, Anna M., Pozmogova, Galina E., Anokhin, Konstantin V., Subach, Fedor V., Enikolopov, Grigori N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5039633/
https://www.ncbi.nlm.nih.gov/pubmed/27677952
http://dx.doi.org/10.1038/srep34447
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author Barykina, Natalia V.
Subach, Oksana M.
Doronin, Danila A.
Sotskov, Vladimir P.
Roshchina, Marina A.
Kunitsyna, Tatiana A.
Malyshev, Aleksey Y.
Smirnov, Ivan V.
Azieva, Asya M.
Sokolov, Ilya S.
Piatkevich, Kiryl D.
Burtsev, Mikhail S.
Varizhuk, Anna M.
Pozmogova, Galina E.
Anokhin, Konstantin V.
Subach, Fedor V.
Enikolopov, Grigori N.
author_facet Barykina, Natalia V.
Subach, Oksana M.
Doronin, Danila A.
Sotskov, Vladimir P.
Roshchina, Marina A.
Kunitsyna, Tatiana A.
Malyshev, Aleksey Y.
Smirnov, Ivan V.
Azieva, Asya M.
Sokolov, Ilya S.
Piatkevich, Kiryl D.
Burtsev, Mikhail S.
Varizhuk, Anna M.
Pozmogova, Galina E.
Anokhin, Konstantin V.
Subach, Fedor V.
Enikolopov, Grigori N.
author_sort Barykina, Natalia V.
collection PubMed
description Genetically encoded calcium indicators (GECIs) are mainly represented by two- or one-fluorophore-based sensors. One type of two-fluorophore-based sensor, carrying Opsanus troponin C (TnC) as the Ca(2+)-binding moiety, has two binding sites for calcium ions, providing a linear response to calcium ions. One-fluorophore-based sensors have four Ca(2+)-binding sites but are better suited for in vivo experiments. Herein, we describe a novel design for a one-fluorophore-based GECI with two Ca(2+)-binding sites. The engineered sensor, called NTnC, uses TnC as the Ca(2+)-binding moiety, inserted in the mNeonGreen fluorescent protein. Monomeric NTnC has higher brightness and pH-stability in vitro compared with the standard GECI GCaMP6s. In addition, NTnC shows an inverted fluorescence response to Ca(2+). Using NTnC, we have visualized Ca(2+) dynamics during spontaneous activity of neuronal cultures as confirmed by control NTnC and its mutant, in which the affinity to Ca(2+) is eliminated. Using whole-cell patch clamp, we have demonstrated that NTnC dynamics in neurons are similar to those of GCaMP6s and allow robust detection of single action potentials. Finally, we have used NTnC to visualize Ca(2+) neuronal activity in vivo in the V1 cortical area in awake and freely moving mice using two-photon microscopy or an nVista miniaturized microscope.
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spelling pubmed-50396332016-09-30 A new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites Barykina, Natalia V. Subach, Oksana M. Doronin, Danila A. Sotskov, Vladimir P. Roshchina, Marina A. Kunitsyna, Tatiana A. Malyshev, Aleksey Y. Smirnov, Ivan V. Azieva, Asya M. Sokolov, Ilya S. Piatkevich, Kiryl D. Burtsev, Mikhail S. Varizhuk, Anna M. Pozmogova, Galina E. Anokhin, Konstantin V. Subach, Fedor V. Enikolopov, Grigori N. Sci Rep Article Genetically encoded calcium indicators (GECIs) are mainly represented by two- or one-fluorophore-based sensors. One type of two-fluorophore-based sensor, carrying Opsanus troponin C (TnC) as the Ca(2+)-binding moiety, has two binding sites for calcium ions, providing a linear response to calcium ions. One-fluorophore-based sensors have four Ca(2+)-binding sites but are better suited for in vivo experiments. Herein, we describe a novel design for a one-fluorophore-based GECI with two Ca(2+)-binding sites. The engineered sensor, called NTnC, uses TnC as the Ca(2+)-binding moiety, inserted in the mNeonGreen fluorescent protein. Monomeric NTnC has higher brightness and pH-stability in vitro compared with the standard GECI GCaMP6s. In addition, NTnC shows an inverted fluorescence response to Ca(2+). Using NTnC, we have visualized Ca(2+) dynamics during spontaneous activity of neuronal cultures as confirmed by control NTnC and its mutant, in which the affinity to Ca(2+) is eliminated. Using whole-cell patch clamp, we have demonstrated that NTnC dynamics in neurons are similar to those of GCaMP6s and allow robust detection of single action potentials. Finally, we have used NTnC to visualize Ca(2+) neuronal activity in vivo in the V1 cortical area in awake and freely moving mice using two-photon microscopy or an nVista miniaturized microscope. Nature Publishing Group 2016-09-28 /pmc/articles/PMC5039633/ /pubmed/27677952 http://dx.doi.org/10.1038/srep34447 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Barykina, Natalia V.
Subach, Oksana M.
Doronin, Danila A.
Sotskov, Vladimir P.
Roshchina, Marina A.
Kunitsyna, Tatiana A.
Malyshev, Aleksey Y.
Smirnov, Ivan V.
Azieva, Asya M.
Sokolov, Ilya S.
Piatkevich, Kiryl D.
Burtsev, Mikhail S.
Varizhuk, Anna M.
Pozmogova, Galina E.
Anokhin, Konstantin V.
Subach, Fedor V.
Enikolopov, Grigori N.
A new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites
title A new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites
title_full A new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites
title_fullStr A new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites
title_full_unstemmed A new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites
title_short A new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites
title_sort new design for a green calcium indicator with a smaller size and a reduced number of calcium-binding sites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5039633/
https://www.ncbi.nlm.nih.gov/pubmed/27677952
http://dx.doi.org/10.1038/srep34447
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