Autism-like behaviours and enhanced memory formation and synaptic plasticity in Lrfn2/SALM1-deficient mice

Lrfn2/SALM1 is a synaptic adhesion molecule, and is known to interact with PSD-95. Here the authors show that Lrfn2 regulates excitatory synapse maturation and maintenance, and that Lrfn2 knockout mice exhibit autism-like behaviours as well as enhanced learning and memory.

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Autores principales: Naoko Morimura, Hiroki Yasuda, Kazuhiko Yamaguchi, Kei-ichi Katayama, Minoru Hatayama, Naoko H. Tomioka, Maya Odagawa, Akiko Kamiya, Yoshimi Iwayama, Motoko Maekawa, Kazuhiko Nakamura, Hideo Matsuzaki, Masatsugu Tsujii, Kazuyuki Yamada, Takeo Yoshikawa, Jun Aruga
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/1acb992c3c7f417085fb67cf1cfeb33b
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spelling oai:doaj.org-article:1acb992c3c7f417085fb67cf1cfeb33b2021-12-02T14:40:26ZAutism-like behaviours and enhanced memory formation and synaptic plasticity in Lrfn2/SALM1-deficient mice10.1038/ncomms158002041-1723https://doaj.org/article/1acb992c3c7f417085fb67cf1cfeb33b2017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15800https://doaj.org/toc/2041-1723Lrfn2/SALM1 is a synaptic adhesion molecule, and is known to interact with PSD-95. Here the authors show that Lrfn2 regulates excitatory synapse maturation and maintenance, and that Lrfn2 knockout mice exhibit autism-like behaviours as well as enhanced learning and memory.Naoko MorimuraHiroki YasudaKazuhiko YamaguchiKei-ichi KatayamaMinoru HatayamaNaoko H. TomiokaMaya OdagawaAkiko KamiyaYoshimi IwayamaMotoko MaekawaKazuhiko NakamuraHideo MatsuzakiMasatsugu TsujiiKazuyuki YamadaTakeo YoshikawaJun ArugaNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-17 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Naoko Morimura
Hiroki Yasuda
Kazuhiko Yamaguchi
Kei-ichi Katayama
Minoru Hatayama
Naoko H. Tomioka
Maya Odagawa
Akiko Kamiya
Yoshimi Iwayama
Motoko Maekawa
Kazuhiko Nakamura
Hideo Matsuzaki
Masatsugu Tsujii
Kazuyuki Yamada
Takeo Yoshikawa
Jun Aruga
Autism-like behaviours and enhanced memory formation and synaptic plasticity in Lrfn2/SALM1-deficient mice
description Lrfn2/SALM1 is a synaptic adhesion molecule, and is known to interact with PSD-95. Here the authors show that Lrfn2 regulates excitatory synapse maturation and maintenance, and that Lrfn2 knockout mice exhibit autism-like behaviours as well as enhanced learning and memory.
format article
author Naoko Morimura
Hiroki Yasuda
Kazuhiko Yamaguchi
Kei-ichi Katayama
Minoru Hatayama
Naoko H. Tomioka
Maya Odagawa
Akiko Kamiya
Yoshimi Iwayama
Motoko Maekawa
Kazuhiko Nakamura
Hideo Matsuzaki
Masatsugu Tsujii
Kazuyuki Yamada
Takeo Yoshikawa
Jun Aruga
author_facet Naoko Morimura
Hiroki Yasuda
Kazuhiko Yamaguchi
Kei-ichi Katayama
Minoru Hatayama
Naoko H. Tomioka
Maya Odagawa
Akiko Kamiya
Yoshimi Iwayama
Motoko Maekawa
Kazuhiko Nakamura
Hideo Matsuzaki
Masatsugu Tsujii
Kazuyuki Yamada
Takeo Yoshikawa
Jun Aruga
author_sort Naoko Morimura
title Autism-like behaviours and enhanced memory formation and synaptic plasticity in Lrfn2/SALM1-deficient mice
title_short Autism-like behaviours and enhanced memory formation and synaptic plasticity in Lrfn2/SALM1-deficient mice
title_full Autism-like behaviours and enhanced memory formation and synaptic plasticity in Lrfn2/SALM1-deficient mice
title_fullStr Autism-like behaviours and enhanced memory formation and synaptic plasticity in Lrfn2/SALM1-deficient mice
title_full_unstemmed Autism-like behaviours and enhanced memory formation and synaptic plasticity in Lrfn2/SALM1-deficient mice
title_sort autism-like behaviours and enhanced memory formation and synaptic plasticity in lrfn2/salm1-deficient mice
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/1acb992c3c7f417085fb67cf1cfeb33b
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