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Mutant huntingtin enhances activation of dendritic Kv4 K(+) channels in striatal spiny projection neurons

Huntington’s disease (HD) is initially characterized by an inability to suppress unwanted movements, a deficit attributable to impaired synaptic activation of striatal indirect pathway spiny projection neurons (iSPNs). To better understand the mechanisms underlying this deficit, striatal neurons in...

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Autores principales: Carrillo-Reid, Luis, Day, Michelle, Xie, Zhong, Melendez, Alexandria E, Kondapalli, Jyothisri, Plotkin, Joshua L, Wokosin, David L, Chen, Yu, Kress, Geraldine J, Kaplitt, Michael, Ilijic, Ema, Guzman, Jaime N, Chan, C Savio, Surmeier, D James
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6481990/
https://www.ncbi.nlm.nih.gov/pubmed/31017573
http://dx.doi.org/10.7554/eLife.40818
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author Carrillo-Reid, Luis
Day, Michelle
Xie, Zhong
Melendez, Alexandria E
Kondapalli, Jyothisri
Plotkin, Joshua L
Wokosin, David L
Chen, Yu
Kress, Geraldine J
Kaplitt, Michael
Ilijic, Ema
Guzman, Jaime N
Chan, C Savio
Surmeier, D James
author_facet Carrillo-Reid, Luis
Day, Michelle
Xie, Zhong
Melendez, Alexandria E
Kondapalli, Jyothisri
Plotkin, Joshua L
Wokosin, David L
Chen, Yu
Kress, Geraldine J
Kaplitt, Michael
Ilijic, Ema
Guzman, Jaime N
Chan, C Savio
Surmeier, D James
author_sort Carrillo-Reid, Luis
collection PubMed
description Huntington’s disease (HD) is initially characterized by an inability to suppress unwanted movements, a deficit attributable to impaired synaptic activation of striatal indirect pathway spiny projection neurons (iSPNs). To better understand the mechanisms underlying this deficit, striatal neurons in ex vivo brain slices from mouse genetic models of HD were studied using electrophysiological, optical and biochemical approaches. Distal dendrites of iSPNs from symptomatic HD mice were hypoexcitable, a change that was attributable to increased association of dendritic Kv4 potassium channels with auxiliary KChIP subunits. This association was negatively modulated by TrkB receptor signaling. Dendritic excitability of HD iSPNs was rescued by knocking-down expression of Kv4 channels, by disrupting KChIP binding, by restoring TrkB receptor signaling or by lowering mutant-Htt (mHtt) levels with a zinc finger protein. Collectively, these studies demonstrate that mHtt induces reversible alterations in the dendritic excitability of iSPNs that could contribute to the motor symptoms of HD.
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spelling pubmed-64819902019-04-25 Mutant huntingtin enhances activation of dendritic Kv4 K(+) channels in striatal spiny projection neurons Carrillo-Reid, Luis Day, Michelle Xie, Zhong Melendez, Alexandria E Kondapalli, Jyothisri Plotkin, Joshua L Wokosin, David L Chen, Yu Kress, Geraldine J Kaplitt, Michael Ilijic, Ema Guzman, Jaime N Chan, C Savio Surmeier, D James eLife Neuroscience Huntington’s disease (HD) is initially characterized by an inability to suppress unwanted movements, a deficit attributable to impaired synaptic activation of striatal indirect pathway spiny projection neurons (iSPNs). To better understand the mechanisms underlying this deficit, striatal neurons in ex vivo brain slices from mouse genetic models of HD were studied using electrophysiological, optical and biochemical approaches. Distal dendrites of iSPNs from symptomatic HD mice were hypoexcitable, a change that was attributable to increased association of dendritic Kv4 potassium channels with auxiliary KChIP subunits. This association was negatively modulated by TrkB receptor signaling. Dendritic excitability of HD iSPNs was rescued by knocking-down expression of Kv4 channels, by disrupting KChIP binding, by restoring TrkB receptor signaling or by lowering mutant-Htt (mHtt) levels with a zinc finger protein. Collectively, these studies demonstrate that mHtt induces reversible alterations in the dendritic excitability of iSPNs that could contribute to the motor symptoms of HD. eLife Sciences Publications, Ltd 2019-04-24 /pmc/articles/PMC6481990/ /pubmed/31017573 http://dx.doi.org/10.7554/eLife.40818 Text en © 2019, Carrillo-Reid et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Neuroscience
Carrillo-Reid, Luis
Day, Michelle
Xie, Zhong
Melendez, Alexandria E
Kondapalli, Jyothisri
Plotkin, Joshua L
Wokosin, David L
Chen, Yu
Kress, Geraldine J
Kaplitt, Michael
Ilijic, Ema
Guzman, Jaime N
Chan, C Savio
Surmeier, D James
Mutant huntingtin enhances activation of dendritic Kv4 K(+) channels in striatal spiny projection neurons
title Mutant huntingtin enhances activation of dendritic Kv4 K(+) channels in striatal spiny projection neurons
title_full Mutant huntingtin enhances activation of dendritic Kv4 K(+) channels in striatal spiny projection neurons
title_fullStr Mutant huntingtin enhances activation of dendritic Kv4 K(+) channels in striatal spiny projection neurons
title_full_unstemmed Mutant huntingtin enhances activation of dendritic Kv4 K(+) channels in striatal spiny projection neurons
title_short Mutant huntingtin enhances activation of dendritic Kv4 K(+) channels in striatal spiny projection neurons
title_sort mutant huntingtin enhances activation of dendritic kv4 k(+) channels in striatal spiny projection neurons
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6481990/
https://www.ncbi.nlm.nih.gov/pubmed/31017573
http://dx.doi.org/10.7554/eLife.40818
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