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The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic Spines

Kainate receptors (KAR) play a crucial role in the plasticity and functional maturation of glutamatergic synapses. However, how they regulate structural plasticity of dendritic spines is not known. The GluK2 subunit was recently shown to coexist in a functional complex with the neuronal K-Cl cotrans...

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Autores principales: Kesaf, Sebnem, Khirug, Stanislav, Dinh, Emilie, Saez Garcia, Marta, Soni, Shetal, Orav, Ester, Delpire, Eric, Taira, Tomi, Lauri, Sari E., Rivera, Claudio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7479265/
https://www.ncbi.nlm.nih.gov/pubmed/33005130
http://dx.doi.org/10.3389/fncel.2020.00252
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author Kesaf, Sebnem
Khirug, Stanislav
Dinh, Emilie
Saez Garcia, Marta
Soni, Shetal
Orav, Ester
Delpire, Eric
Taira, Tomi
Lauri, Sari E.
Rivera, Claudio
author_facet Kesaf, Sebnem
Khirug, Stanislav
Dinh, Emilie
Saez Garcia, Marta
Soni, Shetal
Orav, Ester
Delpire, Eric
Taira, Tomi
Lauri, Sari E.
Rivera, Claudio
author_sort Kesaf, Sebnem
collection PubMed
description Kainate receptors (KAR) play a crucial role in the plasticity and functional maturation of glutamatergic synapses. However, how they regulate structural plasticity of dendritic spines is not known. The GluK2 subunit was recently shown to coexist in a functional complex with the neuronal K-Cl cotransporter KCC2. Apart from having a crucial role in the maturation of GABAergic transmission, KCC2 has a morphogenic role in the maturation of dendritic spines. Here, we show that in vivo local inactivation of GluK2 expression in CA3 hippocampal neurons induces altered morphology of dendritic spines and reduction in mEPSC frequency. GluK2 deficiency also resulted in a strong change in the subcellular distribution of KCC2 as well as a smaller somatodendritic gradient in the reversal potential of GABA(A). Strikingly, the aberrant morphology of dendritic spines in GluK2-deficient CA3 pyramidal neurons was restored by overexpression of KCC2. GluK2 silencing in hippocampal neurons significantly reduced the expression of 4.1N and functional form of the actin filament severing protein cofilin. Consistently, assessment of actin dynamics using fluorescence recovery after photobleaching (FRAP) of β-actin showed a significant increase in the stability of F-actin filaments in dendritic spines. In conclusion, our results demonstrate that GluK2-KCC2 interaction plays an important role in the structural maturation of dendritic spines. This also provides novel insights into the connection between KAR dysfunction, structural plasticity, and developmental disorders.
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spelling pubmed-74792652020-09-30 The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic Spines Kesaf, Sebnem Khirug, Stanislav Dinh, Emilie Saez Garcia, Marta Soni, Shetal Orav, Ester Delpire, Eric Taira, Tomi Lauri, Sari E. Rivera, Claudio Front Cell Neurosci Cellular Neuroscience Kainate receptors (KAR) play a crucial role in the plasticity and functional maturation of glutamatergic synapses. However, how they regulate structural plasticity of dendritic spines is not known. The GluK2 subunit was recently shown to coexist in a functional complex with the neuronal K-Cl cotransporter KCC2. Apart from having a crucial role in the maturation of GABAergic transmission, KCC2 has a morphogenic role in the maturation of dendritic spines. Here, we show that in vivo local inactivation of GluK2 expression in CA3 hippocampal neurons induces altered morphology of dendritic spines and reduction in mEPSC frequency. GluK2 deficiency also resulted in a strong change in the subcellular distribution of KCC2 as well as a smaller somatodendritic gradient in the reversal potential of GABA(A). Strikingly, the aberrant morphology of dendritic spines in GluK2-deficient CA3 pyramidal neurons was restored by overexpression of KCC2. GluK2 silencing in hippocampal neurons significantly reduced the expression of 4.1N and functional form of the actin filament severing protein cofilin. Consistently, assessment of actin dynamics using fluorescence recovery after photobleaching (FRAP) of β-actin showed a significant increase in the stability of F-actin filaments in dendritic spines. In conclusion, our results demonstrate that GluK2-KCC2 interaction plays an important role in the structural maturation of dendritic spines. This also provides novel insights into the connection between KAR dysfunction, structural plasticity, and developmental disorders. Frontiers Media S.A. 2020-08-26 /pmc/articles/PMC7479265/ /pubmed/33005130 http://dx.doi.org/10.3389/fncel.2020.00252 Text en Copyright © 2020 Kesaf, Khirug, Dinh, Saez Garcia, Soni, Orav, Delpire, Taira, Lauri and Rivera. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular Neuroscience
Kesaf, Sebnem
Khirug, Stanislav
Dinh, Emilie
Saez Garcia, Marta
Soni, Shetal
Orav, Ester
Delpire, Eric
Taira, Tomi
Lauri, Sari E.
Rivera, Claudio
The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic Spines
title The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic Spines
title_full The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic Spines
title_fullStr The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic Spines
title_full_unstemmed The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic Spines
title_short The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic Spines
title_sort kainate receptor subunit gluk2 interacts with kcc2 to promote maturation of dendritic spines
topic Cellular Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7479265/
https://www.ncbi.nlm.nih.gov/pubmed/33005130
http://dx.doi.org/10.3389/fncel.2020.00252
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