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Targeted sensors for glutamatergic neurotransmission

Optical report of neurotransmitter release allows visualisation of excitatory synaptic transmission. Sensitive genetically-encoded fluorescent glutamate reporters operating with a range of affinities and emission wavelengths are available. However, without targeting to synapses, the specificity of t...

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Autores principales: Hao, Yuchen, Toulmé, Estelle, König, Benjamin, Rosenmund, Christian, Plested, Andrew JR
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917459/
https://www.ncbi.nlm.nih.gov/pubmed/36622100
http://dx.doi.org/10.7554/eLife.84029
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author Hao, Yuchen
Toulmé, Estelle
König, Benjamin
Rosenmund, Christian
Plested, Andrew JR
author_facet Hao, Yuchen
Toulmé, Estelle
König, Benjamin
Rosenmund, Christian
Plested, Andrew JR
author_sort Hao, Yuchen
collection PubMed
description Optical report of neurotransmitter release allows visualisation of excitatory synaptic transmission. Sensitive genetically-encoded fluorescent glutamate reporters operating with a range of affinities and emission wavelengths are available. However, without targeting to synapses, the specificity of the fluorescent signal is uncertain, compared to sensors directed at vesicles or other synaptic markers. We fused the state-of-the-art reporter iGluSnFR to glutamate receptor auxiliary proteins in order to target it to postsynaptic sites. Chimeras of Stargazin and gamma-8 that we named SnFR-γ2 and SnFR-γ8, were enriched at synapses, retained function and reported spontaneous glutamate release in rat hippocampal cells, with apparently diffraction-limited spatial precision. In autaptic mouse neurons cultured on astrocytic microislands, evoked neurotransmitter release could be quantitatively detected at tens of synapses in a field of view whilst evoked currents were recorded simultaneously. These experiments revealed a specific postsynaptic deficit from Stargazin overexpression, resulting in synapses with normal neurotransmitter release but without postsynaptic responses. This defect was reverted by delaying overexpression. By working at different calcium concentrations, we determined that SnFR-γ2 is a linear reporter of the global quantal parameters and short-term synaptic plasticity, whereas iGluSnFR is not. On average, half of iGluSnFR regions of interest (ROIs) showing evoked fluorescence changes had intense rundown, whereas less than 5% of SnFR-γ2 ROIs did. We provide an open-source analysis suite for extracting quantal parameters including release probability from fluorescence time series of individual and grouped synaptic responses. Taken together, postsynaptic targeting improves several properties of iGluSnFR and further demonstrates the importance of subcellular targeting for optogenetic actuators and reporters.
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spelling pubmed-99174592023-02-11 Targeted sensors for glutamatergic neurotransmission Hao, Yuchen Toulmé, Estelle König, Benjamin Rosenmund, Christian Plested, Andrew JR eLife Neuroscience Optical report of neurotransmitter release allows visualisation of excitatory synaptic transmission. Sensitive genetically-encoded fluorescent glutamate reporters operating with a range of affinities and emission wavelengths are available. However, without targeting to synapses, the specificity of the fluorescent signal is uncertain, compared to sensors directed at vesicles or other synaptic markers. We fused the state-of-the-art reporter iGluSnFR to glutamate receptor auxiliary proteins in order to target it to postsynaptic sites. Chimeras of Stargazin and gamma-8 that we named SnFR-γ2 and SnFR-γ8, were enriched at synapses, retained function and reported spontaneous glutamate release in rat hippocampal cells, with apparently diffraction-limited spatial precision. In autaptic mouse neurons cultured on astrocytic microislands, evoked neurotransmitter release could be quantitatively detected at tens of synapses in a field of view whilst evoked currents were recorded simultaneously. These experiments revealed a specific postsynaptic deficit from Stargazin overexpression, resulting in synapses with normal neurotransmitter release but without postsynaptic responses. This defect was reverted by delaying overexpression. By working at different calcium concentrations, we determined that SnFR-γ2 is a linear reporter of the global quantal parameters and short-term synaptic plasticity, whereas iGluSnFR is not. On average, half of iGluSnFR regions of interest (ROIs) showing evoked fluorescence changes had intense rundown, whereas less than 5% of SnFR-γ2 ROIs did. We provide an open-source analysis suite for extracting quantal parameters including release probability from fluorescence time series of individual and grouped synaptic responses. Taken together, postsynaptic targeting improves several properties of iGluSnFR and further demonstrates the importance of subcellular targeting for optogenetic actuators and reporters. eLife Sciences Publications, Ltd 2023-01-09 /pmc/articles/PMC9917459/ /pubmed/36622100 http://dx.doi.org/10.7554/eLife.84029 Text en © 2023, Hao et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
Hao, Yuchen
Toulmé, Estelle
König, Benjamin
Rosenmund, Christian
Plested, Andrew JR
Targeted sensors for glutamatergic neurotransmission
title Targeted sensors for glutamatergic neurotransmission
title_full Targeted sensors for glutamatergic neurotransmission
title_fullStr Targeted sensors for glutamatergic neurotransmission
title_full_unstemmed Targeted sensors for glutamatergic neurotransmission
title_short Targeted sensors for glutamatergic neurotransmission
title_sort targeted sensors for glutamatergic neurotransmission
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9917459/
https://www.ncbi.nlm.nih.gov/pubmed/36622100
http://dx.doi.org/10.7554/eLife.84029
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AT konigbenjamin targetedsensorsforglutamatergicneurotransmission
AT rosenmundchristian targetedsensorsforglutamatergicneurotransmission
AT plestedandrewjr targetedsensorsforglutamatergicneurotransmission