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De novo variants in CAMK2A and CAMK2B cause neurodevelopmental disorders

OBJECTIVE: α (CAMK2A) and β (CAMK2B) isoforms of Calcium/calmodulin‐dependent protein kinase II (CaMKII) play a pivotal role in neuronal plasticity and in learning and memory processes in the brain. Here, we explore the possible involvement of α‐ and β‐CaMKII variants in neurodevelopmental disorders...

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Autores principales: Akita, Tenpei, Aoto, Kazushi, Kato, Mitsuhiro, Shiina, Masaaki, Mutoh, Hiroki, Nakashima, Mitsuko, Kuki, Ichiro, Okazaki, Shin, Magara, Shinichi, Shiihara, Takashi, Yokochi, Kenji, Aiba, Kaori, Tohyama, Jun, Ohba, Chihiro, Miyatake, Satoko, Miyake, Noriko, Ogata, Kazuhiro, Fukuda, Atsuo, Matsumoto, Naomichi, Saitsu, Hirotomo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5846454/
https://www.ncbi.nlm.nih.gov/pubmed/29560374
http://dx.doi.org/10.1002/acn3.528
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author Akita, Tenpei
Aoto, Kazushi
Kato, Mitsuhiro
Shiina, Masaaki
Mutoh, Hiroki
Nakashima, Mitsuko
Kuki, Ichiro
Okazaki, Shin
Magara, Shinichi
Shiihara, Takashi
Yokochi, Kenji
Aiba, Kaori
Tohyama, Jun
Ohba, Chihiro
Miyatake, Satoko
Miyake, Noriko
Ogata, Kazuhiro
Fukuda, Atsuo
Matsumoto, Naomichi
Saitsu, Hirotomo
author_facet Akita, Tenpei
Aoto, Kazushi
Kato, Mitsuhiro
Shiina, Masaaki
Mutoh, Hiroki
Nakashima, Mitsuko
Kuki, Ichiro
Okazaki, Shin
Magara, Shinichi
Shiihara, Takashi
Yokochi, Kenji
Aiba, Kaori
Tohyama, Jun
Ohba, Chihiro
Miyatake, Satoko
Miyake, Noriko
Ogata, Kazuhiro
Fukuda, Atsuo
Matsumoto, Naomichi
Saitsu, Hirotomo
author_sort Akita, Tenpei
collection PubMed
description OBJECTIVE: α (CAMK2A) and β (CAMK2B) isoforms of Calcium/calmodulin‐dependent protein kinase II (CaMKII) play a pivotal role in neuronal plasticity and in learning and memory processes in the brain. Here, we explore the possible involvement of α‐ and β‐CaMKII variants in neurodevelopmental disorders. METHODS: Whole‐exome sequencing was performed for 976 individuals with intellectual disability, developmental delay, and epilepsy. The effect of CAMK2A and CAMK2B variants on CaMKII structure and firing of neurons was evaluated by computational structural analysis, immunoblotting, and electrophysiological analysis. RESULTS: We identified a total of five de novo CAMK2A and CAMK2B variants in three and two individuals, respectively. Seizures were common to three individuals with CAMK2A variants. Using a minigene splicing assay, we demonstrated that a splice site variant caused skipping of exon 11 leading to an in‐frame deletion of the regulatory segment of CaMKII α. By structural analysis, four missense variants are predicted to impair the interaction between the kinase domain and the regulatory segment responsible for the autoinhibition of its kinase activity. The Thr286/Thr287 phosphorylation as a result of release from autoinhibition was increased in three mutants when the mutants were stably expressed in Neuro‐2a neuroblastoma cells. Expression of a CaMKII α mutant in primary hippocampal neurons significantly increased A‐type K(+) currents, which facilitated spike repolarization of single action potentials. INTERPRETATION: Our data highlight the importance of CaMKII α and CaMKII β and their autoinhibitory regulation in human brain function, and suggest the enhancement of A‐type K(+) currents as a possible pathophysiological basis.
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spelling pubmed-58464542018-03-20 De novo variants in CAMK2A and CAMK2B cause neurodevelopmental disorders Akita, Tenpei Aoto, Kazushi Kato, Mitsuhiro Shiina, Masaaki Mutoh, Hiroki Nakashima, Mitsuko Kuki, Ichiro Okazaki, Shin Magara, Shinichi Shiihara, Takashi Yokochi, Kenji Aiba, Kaori Tohyama, Jun Ohba, Chihiro Miyatake, Satoko Miyake, Noriko Ogata, Kazuhiro Fukuda, Atsuo Matsumoto, Naomichi Saitsu, Hirotomo Ann Clin Transl Neurol Research Articles OBJECTIVE: α (CAMK2A) and β (CAMK2B) isoforms of Calcium/calmodulin‐dependent protein kinase II (CaMKII) play a pivotal role in neuronal plasticity and in learning and memory processes in the brain. Here, we explore the possible involvement of α‐ and β‐CaMKII variants in neurodevelopmental disorders. METHODS: Whole‐exome sequencing was performed for 976 individuals with intellectual disability, developmental delay, and epilepsy. The effect of CAMK2A and CAMK2B variants on CaMKII structure and firing of neurons was evaluated by computational structural analysis, immunoblotting, and electrophysiological analysis. RESULTS: We identified a total of five de novo CAMK2A and CAMK2B variants in three and two individuals, respectively. Seizures were common to three individuals with CAMK2A variants. Using a minigene splicing assay, we demonstrated that a splice site variant caused skipping of exon 11 leading to an in‐frame deletion of the regulatory segment of CaMKII α. By structural analysis, four missense variants are predicted to impair the interaction between the kinase domain and the regulatory segment responsible for the autoinhibition of its kinase activity. The Thr286/Thr287 phosphorylation as a result of release from autoinhibition was increased in three mutants when the mutants were stably expressed in Neuro‐2a neuroblastoma cells. Expression of a CaMKII α mutant in primary hippocampal neurons significantly increased A‐type K(+) currents, which facilitated spike repolarization of single action potentials. INTERPRETATION: Our data highlight the importance of CaMKII α and CaMKII β and their autoinhibitory regulation in human brain function, and suggest the enhancement of A‐type K(+) currents as a possible pathophysiological basis. John Wiley and Sons Inc. 2018-01-29 /pmc/articles/PMC5846454/ /pubmed/29560374 http://dx.doi.org/10.1002/acn3.528 Text en © 2018 The Authors. Annals of Clinical and Translational Neurology published by Wiley Periodicals, Inc on behalf of American Neurological Association. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Akita, Tenpei
Aoto, Kazushi
Kato, Mitsuhiro
Shiina, Masaaki
Mutoh, Hiroki
Nakashima, Mitsuko
Kuki, Ichiro
Okazaki, Shin
Magara, Shinichi
Shiihara, Takashi
Yokochi, Kenji
Aiba, Kaori
Tohyama, Jun
Ohba, Chihiro
Miyatake, Satoko
Miyake, Noriko
Ogata, Kazuhiro
Fukuda, Atsuo
Matsumoto, Naomichi
Saitsu, Hirotomo
De novo variants in CAMK2A and CAMK2B cause neurodevelopmental disorders
title De novo variants in CAMK2A and CAMK2B cause neurodevelopmental disorders
title_full De novo variants in CAMK2A and CAMK2B cause neurodevelopmental disorders
title_fullStr De novo variants in CAMK2A and CAMK2B cause neurodevelopmental disorders
title_full_unstemmed De novo variants in CAMK2A and CAMK2B cause neurodevelopmental disorders
title_short De novo variants in CAMK2A and CAMK2B cause neurodevelopmental disorders
title_sort de novo variants in camk2a and camk2b cause neurodevelopmental disorders
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5846454/
https://www.ncbi.nlm.nih.gov/pubmed/29560374
http://dx.doi.org/10.1002/acn3.528
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