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Chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset Alzheimer’s disease

Down syndrome (DS) is caused by human chromosome 21 (HSA21) trisomy. It is characterized by a poorly understood intellectual disability (ID). We studied two mouse models of DS, one with an extra copy of the Dyrk1A gene (189N3) and the other with an extra copy of the mouse Chr16 syntenic region (Dp(1...

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Autores principales: Viard, Julia, Loe-Mie, Yann, Daudin, Rachel, Khelfaoui, Malik, Plancon, Christine, Boland, Anne, Tejedor, Francisco, Huganir, Richard L, Kim, Eunjoon, Kinoshita, Makoto, Liu, Guofa, Haucke, Volker, Moncion, Thomas, Yu, Eugene, Hindie, Valérie, Bléhaut, Henri, Mircher, Clotilde, Herault, Yann, Deleuze, Jean-François, Rain, Jean-Christophe, Simonneau, Michel, Lepagnol-Bestel, Aude-Marie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9348576/
https://www.ncbi.nlm.nih.gov/pubmed/35914814
http://dx.doi.org/10.26508/lsa.202101205
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author Viard, Julia
Loe-Mie, Yann
Daudin, Rachel
Khelfaoui, Malik
Plancon, Christine
Boland, Anne
Tejedor, Francisco
Huganir, Richard L
Kim, Eunjoon
Kinoshita, Makoto
Liu, Guofa
Haucke, Volker
Moncion, Thomas
Yu, Eugene
Hindie, Valérie
Bléhaut, Henri
Mircher, Clotilde
Herault, Yann
Deleuze, Jean-François
Rain, Jean-Christophe
Simonneau, Michel
Lepagnol-Bestel, Aude-Marie
author_facet Viard, Julia
Loe-Mie, Yann
Daudin, Rachel
Khelfaoui, Malik
Plancon, Christine
Boland, Anne
Tejedor, Francisco
Huganir, Richard L
Kim, Eunjoon
Kinoshita, Makoto
Liu, Guofa
Haucke, Volker
Moncion, Thomas
Yu, Eugene
Hindie, Valérie
Bléhaut, Henri
Mircher, Clotilde
Herault, Yann
Deleuze, Jean-François
Rain, Jean-Christophe
Simonneau, Michel
Lepagnol-Bestel, Aude-Marie
author_sort Viard, Julia
collection PubMed
description Down syndrome (DS) is caused by human chromosome 21 (HSA21) trisomy. It is characterized by a poorly understood intellectual disability (ID). We studied two mouse models of DS, one with an extra copy of the Dyrk1A gene (189N3) and the other with an extra copy of the mouse Chr16 syntenic region (Dp(16)1Yey). RNA-seq analysis of the transcripts deregulated in the embryonic hippocampus revealed an enrichment in genes associated with chromatin for the 189N3 model, and synapses for the Dp(16)1Yey model. A large-scale yeast two-hybrid screen (82 different screens, including 72 HSA21 baits and 10 rebounds) of a human brain library containing at least 10(7) independent fragments identified 1,949 novel protein–protein interactions. The direct interactors of HSA21 baits and rebounds were significantly enriched in ID-related genes (P-value < 2.29 × 10(−8)). Proximity ligation assays showed that some of the proteins encoded by HSA21 were located at the dendritic spine postsynaptic density, in a protein network at the dendritic spine postsynapse. We located HSA21 DYRK1A and DSCAM, mutations of which increase the risk of autism spectrum disorder (ASD) 20-fold, in this postsynaptic network. We found that an intracellular domain of DSCAM bound either DLGs, which are multimeric scaffolds comprising receptors, ion channels and associated signaling proteins, or DYRK1A. The DYRK1A-DSCAM interaction domain is conserved in Drosophila and humans. The postsynaptic network was found to be enriched in proteins associated with ARC-related synaptic plasticity, ASD, and late-onset Alzheimer’s disease. These results highlight links between DS and brain diseases with a complex genetic basis.
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spelling pubmed-93485762022-08-15 Chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset Alzheimer’s disease Viard, Julia Loe-Mie, Yann Daudin, Rachel Khelfaoui, Malik Plancon, Christine Boland, Anne Tejedor, Francisco Huganir, Richard L Kim, Eunjoon Kinoshita, Makoto Liu, Guofa Haucke, Volker Moncion, Thomas Yu, Eugene Hindie, Valérie Bléhaut, Henri Mircher, Clotilde Herault, Yann Deleuze, Jean-François Rain, Jean-Christophe Simonneau, Michel Lepagnol-Bestel, Aude-Marie Life Sci Alliance Research Articles Down syndrome (DS) is caused by human chromosome 21 (HSA21) trisomy. It is characterized by a poorly understood intellectual disability (ID). We studied two mouse models of DS, one with an extra copy of the Dyrk1A gene (189N3) and the other with an extra copy of the mouse Chr16 syntenic region (Dp(16)1Yey). RNA-seq analysis of the transcripts deregulated in the embryonic hippocampus revealed an enrichment in genes associated with chromatin for the 189N3 model, and synapses for the Dp(16)1Yey model. A large-scale yeast two-hybrid screen (82 different screens, including 72 HSA21 baits and 10 rebounds) of a human brain library containing at least 10(7) independent fragments identified 1,949 novel protein–protein interactions. The direct interactors of HSA21 baits and rebounds were significantly enriched in ID-related genes (P-value < 2.29 × 10(−8)). Proximity ligation assays showed that some of the proteins encoded by HSA21 were located at the dendritic spine postsynaptic density, in a protein network at the dendritic spine postsynapse. We located HSA21 DYRK1A and DSCAM, mutations of which increase the risk of autism spectrum disorder (ASD) 20-fold, in this postsynaptic network. We found that an intracellular domain of DSCAM bound either DLGs, which are multimeric scaffolds comprising receptors, ion channels and associated signaling proteins, or DYRK1A. The DYRK1A-DSCAM interaction domain is conserved in Drosophila and humans. The postsynaptic network was found to be enriched in proteins associated with ARC-related synaptic plasticity, ASD, and late-onset Alzheimer’s disease. These results highlight links between DS and brain diseases with a complex genetic basis. Life Science Alliance LLC 2022-08-01 /pmc/articles/PMC9348576/ /pubmed/35914814 http://dx.doi.org/10.26508/lsa.202101205 Text en © 2022 Viard et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Viard, Julia
Loe-Mie, Yann
Daudin, Rachel
Khelfaoui, Malik
Plancon, Christine
Boland, Anne
Tejedor, Francisco
Huganir, Richard L
Kim, Eunjoon
Kinoshita, Makoto
Liu, Guofa
Haucke, Volker
Moncion, Thomas
Yu, Eugene
Hindie, Valérie
Bléhaut, Henri
Mircher, Clotilde
Herault, Yann
Deleuze, Jean-François
Rain, Jean-Christophe
Simonneau, Michel
Lepagnol-Bestel, Aude-Marie
Chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset Alzheimer’s disease
title Chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset Alzheimer’s disease
title_full Chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset Alzheimer’s disease
title_fullStr Chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset Alzheimer’s disease
title_full_unstemmed Chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset Alzheimer’s disease
title_short Chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset Alzheimer’s disease
title_sort chr21 protein–protein interactions: enrichment in proteins involved in intellectual disability, autism, and late-onset alzheimer’s disease
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9348576/
https://www.ncbi.nlm.nih.gov/pubmed/35914814
http://dx.doi.org/10.26508/lsa.202101205
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