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Zebrafish knockout of Down syndrome gene, DYRK1A, shows social impairments relevant to autism

BACKGROUND: DYRK1A maps to the Down syndrome critical region at 21q22. Mutations in this kinase-encoding gene have been reported to cause microcephaly associated with either intellectual disability or autism in humans. Intellectual disability accompanied by microcephaly was recapitulated in a murine...

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Autores principales: Kim, Oc-Hee, Cho, Hyun-Ju, Han, Enna, Hong, Ted Inpyo, Ariyasiri, Krishan, Choi, Jung-Hwa, Hwang, Kyu-Seok, Jeong, Yun-Mi, Yang, Se-Yeol, Yu, Kweon, Park, Doo-Sang, Oh, Hyun-Woo, Davis, Erica E., Schwartz, Charles E., Lee, Jeong-Soo, Kim, Hyung-Goo, Kim, Cheol-Hee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5622473/
https://www.ncbi.nlm.nih.gov/pubmed/29021890
http://dx.doi.org/10.1186/s13229-017-0168-2
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author Kim, Oc-Hee
Cho, Hyun-Ju
Han, Enna
Hong, Ted Inpyo
Ariyasiri, Krishan
Choi, Jung-Hwa
Hwang, Kyu-Seok
Jeong, Yun-Mi
Yang, Se-Yeol
Yu, Kweon
Park, Doo-Sang
Oh, Hyun-Woo
Davis, Erica E.
Schwartz, Charles E.
Lee, Jeong-Soo
Kim, Hyung-Goo
Kim, Cheol-Hee
author_facet Kim, Oc-Hee
Cho, Hyun-Ju
Han, Enna
Hong, Ted Inpyo
Ariyasiri, Krishan
Choi, Jung-Hwa
Hwang, Kyu-Seok
Jeong, Yun-Mi
Yang, Se-Yeol
Yu, Kweon
Park, Doo-Sang
Oh, Hyun-Woo
Davis, Erica E.
Schwartz, Charles E.
Lee, Jeong-Soo
Kim, Hyung-Goo
Kim, Cheol-Hee
author_sort Kim, Oc-Hee
collection PubMed
description BACKGROUND: DYRK1A maps to the Down syndrome critical region at 21q22. Mutations in this kinase-encoding gene have been reported to cause microcephaly associated with either intellectual disability or autism in humans. Intellectual disability accompanied by microcephaly was recapitulated in a murine model by overexpressing Dyrk1a which mimicked Down syndrome phenotypes. However, given embryonic lethality in homozygous knockout (KO) mice, no murine model studies could present sufficient evidence to link Dyrk1a dysfunction with autism. To understand the molecular mechanisms underlying microcephaly and autism spectrum disorders (ASD), we established an in vivo dyrk1aa KO model using zebrafish. METHODS: We identified a patient with a mutation in the DYRK1A gene using microarray analysis. Circumventing the barrier of murine model studies, we generated a dyrk1aa KO zebrafish using transcription activator-like effector nuclease (TALEN)-mediated genome editing. For social behavioral tests, we have established a social interaction test, shoaling assay, and group behavior assay. For molecular analysis, we examined the neuronal activity in specific brain regions of dyrk1aa KO zebrafish through in situ hybridization with various probes including c-fos and crh which are the molecular markers for stress response. RESULTS: Microarray detected an intragenic microdeletion of DYRK1A in an individual with microcephaly and autism. From behavioral tests of social interaction and group behavior, dyrk1aa KO zebrafish exhibited social impairments that reproduce human phenotypes of autism in a vertebrate animal model. Social impairment in dyrk1aa KO zebrafish was further confirmed by molecular analysis of c-fos and crh expression. Transcriptional expression of c-fos and crh was lower than that of wild type fish in specific hypothalamic regions, suggesting that KO fish brains are less activated by social context. CONCLUSIONS: In this study, we established a zebrafish model to validate a candidate gene for autism in a vertebrate animal. These results illustrate the functional deficiency of DYRK1A as an underlying disease mechanism for autism. We also propose simple social behavioral assays as a tool for the broader study of autism candidate genes. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13229-017-0168-2) contains supplementary material, which is available to authorized users.
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spelling pubmed-56224732017-10-11 Zebrafish knockout of Down syndrome gene, DYRK1A, shows social impairments relevant to autism Kim, Oc-Hee Cho, Hyun-Ju Han, Enna Hong, Ted Inpyo Ariyasiri, Krishan Choi, Jung-Hwa Hwang, Kyu-Seok Jeong, Yun-Mi Yang, Se-Yeol Yu, Kweon Park, Doo-Sang Oh, Hyun-Woo Davis, Erica E. Schwartz, Charles E. Lee, Jeong-Soo Kim, Hyung-Goo Kim, Cheol-Hee Mol Autism Research BACKGROUND: DYRK1A maps to the Down syndrome critical region at 21q22. Mutations in this kinase-encoding gene have been reported to cause microcephaly associated with either intellectual disability or autism in humans. Intellectual disability accompanied by microcephaly was recapitulated in a murine model by overexpressing Dyrk1a which mimicked Down syndrome phenotypes. However, given embryonic lethality in homozygous knockout (KO) mice, no murine model studies could present sufficient evidence to link Dyrk1a dysfunction with autism. To understand the molecular mechanisms underlying microcephaly and autism spectrum disorders (ASD), we established an in vivo dyrk1aa KO model using zebrafish. METHODS: We identified a patient with a mutation in the DYRK1A gene using microarray analysis. Circumventing the barrier of murine model studies, we generated a dyrk1aa KO zebrafish using transcription activator-like effector nuclease (TALEN)-mediated genome editing. For social behavioral tests, we have established a social interaction test, shoaling assay, and group behavior assay. For molecular analysis, we examined the neuronal activity in specific brain regions of dyrk1aa KO zebrafish through in situ hybridization with various probes including c-fos and crh which are the molecular markers for stress response. RESULTS: Microarray detected an intragenic microdeletion of DYRK1A in an individual with microcephaly and autism. From behavioral tests of social interaction and group behavior, dyrk1aa KO zebrafish exhibited social impairments that reproduce human phenotypes of autism in a vertebrate animal model. Social impairment in dyrk1aa KO zebrafish was further confirmed by molecular analysis of c-fos and crh expression. Transcriptional expression of c-fos and crh was lower than that of wild type fish in specific hypothalamic regions, suggesting that KO fish brains are less activated by social context. CONCLUSIONS: In this study, we established a zebrafish model to validate a candidate gene for autism in a vertebrate animal. These results illustrate the functional deficiency of DYRK1A as an underlying disease mechanism for autism. We also propose simple social behavioral assays as a tool for the broader study of autism candidate genes. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13229-017-0168-2) contains supplementary material, which is available to authorized users. BioMed Central 2017-09-29 /pmc/articles/PMC5622473/ /pubmed/29021890 http://dx.doi.org/10.1186/s13229-017-0168-2 Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Kim, Oc-Hee
Cho, Hyun-Ju
Han, Enna
Hong, Ted Inpyo
Ariyasiri, Krishan
Choi, Jung-Hwa
Hwang, Kyu-Seok
Jeong, Yun-Mi
Yang, Se-Yeol
Yu, Kweon
Park, Doo-Sang
Oh, Hyun-Woo
Davis, Erica E.
Schwartz, Charles E.
Lee, Jeong-Soo
Kim, Hyung-Goo
Kim, Cheol-Hee
Zebrafish knockout of Down syndrome gene, DYRK1A, shows social impairments relevant to autism
title Zebrafish knockout of Down syndrome gene, DYRK1A, shows social impairments relevant to autism
title_full Zebrafish knockout of Down syndrome gene, DYRK1A, shows social impairments relevant to autism
title_fullStr Zebrafish knockout of Down syndrome gene, DYRK1A, shows social impairments relevant to autism
title_full_unstemmed Zebrafish knockout of Down syndrome gene, DYRK1A, shows social impairments relevant to autism
title_short Zebrafish knockout of Down syndrome gene, DYRK1A, shows social impairments relevant to autism
title_sort zebrafish knockout of down syndrome gene, dyrk1a, shows social impairments relevant to autism
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5622473/
https://www.ncbi.nlm.nih.gov/pubmed/29021890
http://dx.doi.org/10.1186/s13229-017-0168-2
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