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Derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of Kleefstra syndrome

Haploinsufficiency of EHMT1, which encodes histone H3 lysine 9 (H3K9) methyltransferase G9a-like protein (GLP), causes Kleefstra syndrome (KS), a complex disorder of developmental delay and intellectual disability. Here, we examined whether postnatal supply of GLP can reverse the neurological phenot...

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Autores principales: Yamada, Ayumi, Hirasawa, Takae, Nishimura, Kayako, Shimura, Chikako, Kogo, Naomi, Fukuda, Kei, Kato, Madoka, Yokomori, Masaki, Hayashi, Tetsutaro, Umeda, Mana, Yoshimura, Mika, Iwakura, Yoichiro, Nikaido, Itoshi, Itohara, Shigeyoshi, Shinkai, Yoichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8258976/
https://www.ncbi.nlm.nih.gov/pubmed/34258564
http://dx.doi.org/10.1016/j.isci.2021.102741
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author Yamada, Ayumi
Hirasawa, Takae
Nishimura, Kayako
Shimura, Chikako
Kogo, Naomi
Fukuda, Kei
Kato, Madoka
Yokomori, Masaki
Hayashi, Tetsutaro
Umeda, Mana
Yoshimura, Mika
Iwakura, Yoichiro
Nikaido, Itoshi
Itohara, Shigeyoshi
Shinkai, Yoichi
author_facet Yamada, Ayumi
Hirasawa, Takae
Nishimura, Kayako
Shimura, Chikako
Kogo, Naomi
Fukuda, Kei
Kato, Madoka
Yokomori, Masaki
Hayashi, Tetsutaro
Umeda, Mana
Yoshimura, Mika
Iwakura, Yoichiro
Nikaido, Itoshi
Itohara, Shigeyoshi
Shinkai, Yoichi
author_sort Yamada, Ayumi
collection PubMed
description Haploinsufficiency of EHMT1, which encodes histone H3 lysine 9 (H3K9) methyltransferase G9a-like protein (GLP), causes Kleefstra syndrome (KS), a complex disorder of developmental delay and intellectual disability. Here, we examined whether postnatal supply of GLP can reverse the neurological phenotypes seen in Ehmt1(Δ/+) mice as a KS model. Ubiquitous GLP supply from the juvenile stage ameliorated behavioral abnormalities in Ehmt1(Δ/+) mice. Postnatal neuron-specific GLP supply was not sufficient for the improvement of abnormal behaviors but still reversed the reduction of H3K9me2 and spine number in Ehmt1(Δ/+) mice. Interestingly, some inflammatory genes, including IL-1β (Il1b), were upregulated and activated microglial cells increased in the Ehmt1(Δ/+) brain, and such phenotypes were also reversed by neuron-specific postnatal GLP supply. Il1b inactivation canceled the microglial and spine number phenotypes in the Ehmt1(Δ/+) mice. Thus, H3K9me2 and some neurological phenotypes are reversible, but behavioral abnormalities are more difficult to improve depending on the timing of GLP supply.
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spelling pubmed-82589762021-07-12 Derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of Kleefstra syndrome Yamada, Ayumi Hirasawa, Takae Nishimura, Kayako Shimura, Chikako Kogo, Naomi Fukuda, Kei Kato, Madoka Yokomori, Masaki Hayashi, Tetsutaro Umeda, Mana Yoshimura, Mika Iwakura, Yoichiro Nikaido, Itoshi Itohara, Shigeyoshi Shinkai, Yoichi iScience Article Haploinsufficiency of EHMT1, which encodes histone H3 lysine 9 (H3K9) methyltransferase G9a-like protein (GLP), causes Kleefstra syndrome (KS), a complex disorder of developmental delay and intellectual disability. Here, we examined whether postnatal supply of GLP can reverse the neurological phenotypes seen in Ehmt1(Δ/+) mice as a KS model. Ubiquitous GLP supply from the juvenile stage ameliorated behavioral abnormalities in Ehmt1(Δ/+) mice. Postnatal neuron-specific GLP supply was not sufficient for the improvement of abnormal behaviors but still reversed the reduction of H3K9me2 and spine number in Ehmt1(Δ/+) mice. Interestingly, some inflammatory genes, including IL-1β (Il1b), were upregulated and activated microglial cells increased in the Ehmt1(Δ/+) brain, and such phenotypes were also reversed by neuron-specific postnatal GLP supply. Il1b inactivation canceled the microglial and spine number phenotypes in the Ehmt1(Δ/+) mice. Thus, H3K9me2 and some neurological phenotypes are reversible, but behavioral abnormalities are more difficult to improve depending on the timing of GLP supply. Elsevier 2021-06-17 /pmc/articles/PMC8258976/ /pubmed/34258564 http://dx.doi.org/10.1016/j.isci.2021.102741 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yamada, Ayumi
Hirasawa, Takae
Nishimura, Kayako
Shimura, Chikako
Kogo, Naomi
Fukuda, Kei
Kato, Madoka
Yokomori, Masaki
Hayashi, Tetsutaro
Umeda, Mana
Yoshimura, Mika
Iwakura, Yoichiro
Nikaido, Itoshi
Itohara, Shigeyoshi
Shinkai, Yoichi
Derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of Kleefstra syndrome
title Derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of Kleefstra syndrome
title_full Derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of Kleefstra syndrome
title_fullStr Derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of Kleefstra syndrome
title_full_unstemmed Derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of Kleefstra syndrome
title_short Derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of Kleefstra syndrome
title_sort derepression of inflammation-related genes link to microglia activation and neural maturation defect in a mouse model of kleefstra syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8258976/
https://www.ncbi.nlm.nih.gov/pubmed/34258564
http://dx.doi.org/10.1016/j.isci.2021.102741
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