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Channel-mediated astrocytic glutamate release via Bestrophin-1 targets synaptic NMDARs

BACKGROUND: Astrocytes regulate neuronal excitability and synaptic activity by releasing gliotransmitters such as glutamate. Our recent study demonstrated that astrocytes release glutamate upon GPCR activation via Ca(2+) activated anion channel, Bestrophin-1 (Best1). The target of Best1-mediated ast...

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Autores principales: Han, Kyung-Seok, Woo, Junsung, Park, Hyungju, Yoon, Bong-June, Choi, Sukwoo, Lee, C Justin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3577500/
https://www.ncbi.nlm.nih.gov/pubmed/23324492
http://dx.doi.org/10.1186/1756-6606-6-4
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author Han, Kyung-Seok
Woo, Junsung
Park, Hyungju
Yoon, Bong-June
Choi, Sukwoo
Lee, C Justin
author_facet Han, Kyung-Seok
Woo, Junsung
Park, Hyungju
Yoon, Bong-June
Choi, Sukwoo
Lee, C Justin
author_sort Han, Kyung-Seok
collection PubMed
description BACKGROUND: Astrocytes regulate neuronal excitability and synaptic activity by releasing gliotransmitters such as glutamate. Our recent study demonstrated that astrocytes release glutamate upon GPCR activation via Ca(2+) activated anion channel, Bestrophin-1 (Best1). The target of Best1-mediated astrocytic glutamate has been shown to be the neuronal NMDA receptors (NMDAR). However, whether it targets synaptically or extra-synaptically localized NMDAR is not known. FINDINGS: We recorded spontaneous miniature excitatory postsynaptic currents (mEPSCs) from CA1 pyramidal cells to test whether Best1-mediated astrocytic glutamate targets synaptic NMDAR. An agonist of protease activated receptor 1 (PAR1) was used to induce astrocytic Ca(2+) increase and glutamate release. Firstly, we found that activation of PAR1 and subsequent release of glutamate from astrocyte does not alone increase the frequency of mEPSCs. Secondly, we found that mEPSC rise time is variable depending on the different electrotonic distances from the somatic recording site to the synaptic region where each mEPSC occurs. Two subgroups of mEPSC from CA1 pyramidal neuron by rise time were selected and analyzed. One group is fast rising mEPSCs with a rise time of 1 ~ 5 ms, representing synaptic activities arising from proximal dendrites. The other group is slowly rising mEPSCs with a rise time of 5 ~ 10 ms, representing synaptic events arising from glutamate release at synapses located in the distal dendrites. We used cell-type specific Best1 gene silencing system by Cre-loxP cleavage to dissociate the effect of neuronal and astrocytic Best1. Astrocytic Best1-mediated glutamate release by PAR1 activation did not affect decay kinetics, frequency, and amplitude of fast rising mEPSC. In contrast, PAR1 activation resulted in an NMDA receptor component to be present on slowly rising mEPSC, but did not alter frequency or amplitude. CONCLUSIONS: Our results indicate that astrocytic glutamate via Best1 channel targets and activates synaptic NMDARs.
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spelling pubmed-35775002013-02-21 Channel-mediated astrocytic glutamate release via Bestrophin-1 targets synaptic NMDARs Han, Kyung-Seok Woo, Junsung Park, Hyungju Yoon, Bong-June Choi, Sukwoo Lee, C Justin Mol Brain Research BACKGROUND: Astrocytes regulate neuronal excitability and synaptic activity by releasing gliotransmitters such as glutamate. Our recent study demonstrated that astrocytes release glutamate upon GPCR activation via Ca(2+) activated anion channel, Bestrophin-1 (Best1). The target of Best1-mediated astrocytic glutamate has been shown to be the neuronal NMDA receptors (NMDAR). However, whether it targets synaptically or extra-synaptically localized NMDAR is not known. FINDINGS: We recorded spontaneous miniature excitatory postsynaptic currents (mEPSCs) from CA1 pyramidal cells to test whether Best1-mediated astrocytic glutamate targets synaptic NMDAR. An agonist of protease activated receptor 1 (PAR1) was used to induce astrocytic Ca(2+) increase and glutamate release. Firstly, we found that activation of PAR1 and subsequent release of glutamate from astrocyte does not alone increase the frequency of mEPSCs. Secondly, we found that mEPSC rise time is variable depending on the different electrotonic distances from the somatic recording site to the synaptic region where each mEPSC occurs. Two subgroups of mEPSC from CA1 pyramidal neuron by rise time were selected and analyzed. One group is fast rising mEPSCs with a rise time of 1 ~ 5 ms, representing synaptic activities arising from proximal dendrites. The other group is slowly rising mEPSCs with a rise time of 5 ~ 10 ms, representing synaptic events arising from glutamate release at synapses located in the distal dendrites. We used cell-type specific Best1 gene silencing system by Cre-loxP cleavage to dissociate the effect of neuronal and astrocytic Best1. Astrocytic Best1-mediated glutamate release by PAR1 activation did not affect decay kinetics, frequency, and amplitude of fast rising mEPSC. In contrast, PAR1 activation resulted in an NMDA receptor component to be present on slowly rising mEPSC, but did not alter frequency or amplitude. CONCLUSIONS: Our results indicate that astrocytic glutamate via Best1 channel targets and activates synaptic NMDARs. BioMed Central 2013-01-16 /pmc/articles/PMC3577500/ /pubmed/23324492 http://dx.doi.org/10.1186/1756-6606-6-4 Text en Copyright ©2013 Han et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Han, Kyung-Seok
Woo, Junsung
Park, Hyungju
Yoon, Bong-June
Choi, Sukwoo
Lee, C Justin
Channel-mediated astrocytic glutamate release via Bestrophin-1 targets synaptic NMDARs
title Channel-mediated astrocytic glutamate release via Bestrophin-1 targets synaptic NMDARs
title_full Channel-mediated astrocytic glutamate release via Bestrophin-1 targets synaptic NMDARs
title_fullStr Channel-mediated astrocytic glutamate release via Bestrophin-1 targets synaptic NMDARs
title_full_unstemmed Channel-mediated astrocytic glutamate release via Bestrophin-1 targets synaptic NMDARs
title_short Channel-mediated astrocytic glutamate release via Bestrophin-1 targets synaptic NMDARs
title_sort channel-mediated astrocytic glutamate release via bestrophin-1 targets synaptic nmdars
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3577500/
https://www.ncbi.nlm.nih.gov/pubmed/23324492
http://dx.doi.org/10.1186/1756-6606-6-4
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