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Nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of Dravet syndrome

Dravet syndrome is a severe epileptic encephalopathy mainly caused by heterozygous mutations in the SCN1A gene encoding a voltage-gated sodium channel Nav1.1. We previously reported dense localization of Nav1.1 in parvalbumin (PV)-positive inhibitory interneurons in mice and abnormal firing of those...

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Autores principales: Ogiwara, Ikuo, Iwasato, Takuji, Miyamoto, Hiroyuki, Iwata, Ryohei, Yamagata, Tetsushi, Mazaki, Emi, Yanagawa, Yuchio, Tamamaki, Nobuaki, Hensch, Takao K., Itohara, Shigeyoshi, Yamakawa, Kazuhiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3820136/
https://www.ncbi.nlm.nih.gov/pubmed/23922229
http://dx.doi.org/10.1093/hmg/ddt331
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author Ogiwara, Ikuo
Iwasato, Takuji
Miyamoto, Hiroyuki
Iwata, Ryohei
Yamagata, Tetsushi
Mazaki, Emi
Yanagawa, Yuchio
Tamamaki, Nobuaki
Hensch, Takao K.
Itohara, Shigeyoshi
Yamakawa, Kazuhiro
author_facet Ogiwara, Ikuo
Iwasato, Takuji
Miyamoto, Hiroyuki
Iwata, Ryohei
Yamagata, Tetsushi
Mazaki, Emi
Yanagawa, Yuchio
Tamamaki, Nobuaki
Hensch, Takao K.
Itohara, Shigeyoshi
Yamakawa, Kazuhiro
author_sort Ogiwara, Ikuo
collection PubMed
description Dravet syndrome is a severe epileptic encephalopathy mainly caused by heterozygous mutations in the SCN1A gene encoding a voltage-gated sodium channel Nav1.1. We previously reported dense localization of Nav1.1 in parvalbumin (PV)-positive inhibitory interneurons in mice and abnormal firing of those neurons in Nav1.1-deficient mice. In the present study, we investigated the physiologic consequence of selective Nav1.1 deletion in mouse global inhibitory neurons, forebrain excitatory neurons or PV cells, using vesicular GABA transporter (VGAT)-Cre, empty spiracles homolog 1 (Emx1)-Cre or PV-Cre recombinase drivers. We show that selective Nav1.1 deletion using VGAT-Cre causes epileptic seizures and premature death that are unexpectedly more severe than those observed in constitutive Nav1.1-deficient mice. Nav1.1 deletion using Emx1-Cre does not cause any noticeable abnormalities in mice; however, the severe lethality observed with VGAT-Cre-driven Nav1.1 deletion is rescued by additional Nav1.1 deletion using Emx1-Cre. In addition to predominant expression in PV interneurons, we detected Nav1.1 in subpopulations of excitatory neurons, including entorhino-hippocampal projection neurons, a subpopulation of neocortical layer V excitatory neurons, and thalamo-cortical projection neurons. We further show that even minimal selective Nav1.1 deletion, using PV-Cre, is sufficient to cause spontaneous epileptic seizures and ataxia in mice. Overall, our results indicate that functional impairment of PV inhibitory neurons with Nav1.1 haploinsufficiency contributes to the epileptic pathology of Dravet syndrome, and show for the first time that Nav1.1 haploinsufficiency in excitatory neurons has an ameliorating effect on the pathology.
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spelling pubmed-38201362013-11-07 Nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of Dravet syndrome Ogiwara, Ikuo Iwasato, Takuji Miyamoto, Hiroyuki Iwata, Ryohei Yamagata, Tetsushi Mazaki, Emi Yanagawa, Yuchio Tamamaki, Nobuaki Hensch, Takao K. Itohara, Shigeyoshi Yamakawa, Kazuhiro Hum Mol Genet Articles Dravet syndrome is a severe epileptic encephalopathy mainly caused by heterozygous mutations in the SCN1A gene encoding a voltage-gated sodium channel Nav1.1. We previously reported dense localization of Nav1.1 in parvalbumin (PV)-positive inhibitory interneurons in mice and abnormal firing of those neurons in Nav1.1-deficient mice. In the present study, we investigated the physiologic consequence of selective Nav1.1 deletion in mouse global inhibitory neurons, forebrain excitatory neurons or PV cells, using vesicular GABA transporter (VGAT)-Cre, empty spiracles homolog 1 (Emx1)-Cre or PV-Cre recombinase drivers. We show that selective Nav1.1 deletion using VGAT-Cre causes epileptic seizures and premature death that are unexpectedly more severe than those observed in constitutive Nav1.1-deficient mice. Nav1.1 deletion using Emx1-Cre does not cause any noticeable abnormalities in mice; however, the severe lethality observed with VGAT-Cre-driven Nav1.1 deletion is rescued by additional Nav1.1 deletion using Emx1-Cre. In addition to predominant expression in PV interneurons, we detected Nav1.1 in subpopulations of excitatory neurons, including entorhino-hippocampal projection neurons, a subpopulation of neocortical layer V excitatory neurons, and thalamo-cortical projection neurons. We further show that even minimal selective Nav1.1 deletion, using PV-Cre, is sufficient to cause spontaneous epileptic seizures and ataxia in mice. Overall, our results indicate that functional impairment of PV inhibitory neurons with Nav1.1 haploinsufficiency contributes to the epileptic pathology of Dravet syndrome, and show for the first time that Nav1.1 haploinsufficiency in excitatory neurons has an ameliorating effect on the pathology. Oxford University Press 2013-12-01 2013-08-06 /pmc/articles/PMC3820136/ /pubmed/23922229 http://dx.doi.org/10.1093/hmg/ddt331 Text en © The Author 2013. Published by Oxford University Press http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Articles
Ogiwara, Ikuo
Iwasato, Takuji
Miyamoto, Hiroyuki
Iwata, Ryohei
Yamagata, Tetsushi
Mazaki, Emi
Yanagawa, Yuchio
Tamamaki, Nobuaki
Hensch, Takao K.
Itohara, Shigeyoshi
Yamakawa, Kazuhiro
Nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of Dravet syndrome
title Nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of Dravet syndrome
title_full Nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of Dravet syndrome
title_fullStr Nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of Dravet syndrome
title_full_unstemmed Nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of Dravet syndrome
title_short Nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of Dravet syndrome
title_sort nav1.1 haploinsufficiency in excitatory neurons ameliorates seizure-associated sudden death in a mouse model of dravet syndrome
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3820136/
https://www.ncbi.nlm.nih.gov/pubmed/23922229
http://dx.doi.org/10.1093/hmg/ddt331
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