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SHANK2 mutations associated with Autism Spectrum Disorder cause hyperconnectivity of human neurons

Heterozygous loss-of-function mutations in SHANK2 are associated with autism spectrum disorder (ASD). We generated cortical neurons from induced pluripotent stem cells (iPSC) derived from neurotypic and ASD-affected donors. We developed Sparse coculture for Connectivity (SparCon) assays where SHANK2...

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Autores principales: Zaslavsky, Kirill, Zhang, Wen-Bo, McCready, Fraser P., Rodrigues, Deivid C., Deneault, Eric, Loo, Caitlin, Zhao, Melody, Ross, P. Joel, Hajjar, Joelle El, Romm, Asli, Thompson, Tadeo, Piekna, Alina, Wei, Wei, Wang, Zhuozhi, Khattak, Shahryar, Mufteev, Marat, Pasceri, Peter, Scherer, Stephen W., Salter, Michael W., Ellis, James
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6475597/
https://www.ncbi.nlm.nih.gov/pubmed/30911184
http://dx.doi.org/10.1038/s41593-019-0365-8
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author Zaslavsky, Kirill
Zhang, Wen-Bo
McCready, Fraser P.
Rodrigues, Deivid C.
Deneault, Eric
Loo, Caitlin
Zhao, Melody
Ross, P. Joel
Hajjar, Joelle El
Romm, Asli
Thompson, Tadeo
Piekna, Alina
Wei, Wei
Wang, Zhuozhi
Khattak, Shahryar
Mufteev, Marat
Pasceri, Peter
Scherer, Stephen W.
Salter, Michael W.
Ellis, James
author_facet Zaslavsky, Kirill
Zhang, Wen-Bo
McCready, Fraser P.
Rodrigues, Deivid C.
Deneault, Eric
Loo, Caitlin
Zhao, Melody
Ross, P. Joel
Hajjar, Joelle El
Romm, Asli
Thompson, Tadeo
Piekna, Alina
Wei, Wei
Wang, Zhuozhi
Khattak, Shahryar
Mufteev, Marat
Pasceri, Peter
Scherer, Stephen W.
Salter, Michael W.
Ellis, James
author_sort Zaslavsky, Kirill
collection PubMed
description Heterozygous loss-of-function mutations in SHANK2 are associated with autism spectrum disorder (ASD). We generated cortical neurons from induced pluripotent stem cells (iPSC) derived from neurotypic and ASD-affected donors. We developed Sparse coculture for Connectivity (SparCon) assays where SHANK2 and control neurons were differentially labeled and sparsely seeded together on a lawn of unlabeled control neurons. We observed increases in dendrite length, dendrite complexity, synapse number, and frequency of spontaneous excitatory postsynaptic currents. These findings were phenocopied in gene-edited homozygous SHANK2 knockout cells and rescued by gene correction of an ASD SHANK2 mutation. Dendrite length increases were exacerbated by IGF1, TG003, or BDNF, and suppressed by DHPG treatment. The transcriptome in isogenic SHANK2 neurons was perturbed in synapse, plasticity, and neuronal morphogenesis gene sets and ASD gene modules, and activity-dependent dendrite extension was impaired. Our findings provide evidence for hyperconnectivity and altered transcriptome in SHANK2 neurons derived from ASD subjects.
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spelling pubmed-64755972019-09-25 SHANK2 mutations associated with Autism Spectrum Disorder cause hyperconnectivity of human neurons Zaslavsky, Kirill Zhang, Wen-Bo McCready, Fraser P. Rodrigues, Deivid C. Deneault, Eric Loo, Caitlin Zhao, Melody Ross, P. Joel Hajjar, Joelle El Romm, Asli Thompson, Tadeo Piekna, Alina Wei, Wei Wang, Zhuozhi Khattak, Shahryar Mufteev, Marat Pasceri, Peter Scherer, Stephen W. Salter, Michael W. Ellis, James Nat Neurosci Article Heterozygous loss-of-function mutations in SHANK2 are associated with autism spectrum disorder (ASD). We generated cortical neurons from induced pluripotent stem cells (iPSC) derived from neurotypic and ASD-affected donors. We developed Sparse coculture for Connectivity (SparCon) assays where SHANK2 and control neurons were differentially labeled and sparsely seeded together on a lawn of unlabeled control neurons. We observed increases in dendrite length, dendrite complexity, synapse number, and frequency of spontaneous excitatory postsynaptic currents. These findings were phenocopied in gene-edited homozygous SHANK2 knockout cells and rescued by gene correction of an ASD SHANK2 mutation. Dendrite length increases were exacerbated by IGF1, TG003, or BDNF, and suppressed by DHPG treatment. The transcriptome in isogenic SHANK2 neurons was perturbed in synapse, plasticity, and neuronal morphogenesis gene sets and ASD gene modules, and activity-dependent dendrite extension was impaired. Our findings provide evidence for hyperconnectivity and altered transcriptome in SHANK2 neurons derived from ASD subjects. 2019-03-25 2019-04 /pmc/articles/PMC6475597/ /pubmed/30911184 http://dx.doi.org/10.1038/s41593-019-0365-8 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Zaslavsky, Kirill
Zhang, Wen-Bo
McCready, Fraser P.
Rodrigues, Deivid C.
Deneault, Eric
Loo, Caitlin
Zhao, Melody
Ross, P. Joel
Hajjar, Joelle El
Romm, Asli
Thompson, Tadeo
Piekna, Alina
Wei, Wei
Wang, Zhuozhi
Khattak, Shahryar
Mufteev, Marat
Pasceri, Peter
Scherer, Stephen W.
Salter, Michael W.
Ellis, James
SHANK2 mutations associated with Autism Spectrum Disorder cause hyperconnectivity of human neurons
title SHANK2 mutations associated with Autism Spectrum Disorder cause hyperconnectivity of human neurons
title_full SHANK2 mutations associated with Autism Spectrum Disorder cause hyperconnectivity of human neurons
title_fullStr SHANK2 mutations associated with Autism Spectrum Disorder cause hyperconnectivity of human neurons
title_full_unstemmed SHANK2 mutations associated with Autism Spectrum Disorder cause hyperconnectivity of human neurons
title_short SHANK2 mutations associated with Autism Spectrum Disorder cause hyperconnectivity of human neurons
title_sort shank2 mutations associated with autism spectrum disorder cause hyperconnectivity of human neurons
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6475597/
https://www.ncbi.nlm.nih.gov/pubmed/30911184
http://dx.doi.org/10.1038/s41593-019-0365-8
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