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NCBP2 modulates neurodevelopmental defects of the 3q29 deletion in Drosophila and Xenopus laevis models

The 1.6 Mbp deletion on chromosome 3q29 is associated with a range of neurodevelopmental disorders, including schizophrenia, autism, microcephaly, and intellectual disability. Despite its importance towards neurodevelopment, the role of individual genes, genetic interactions, and disrupted biologica...

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Autores principales: Singh, Mayanglambam Dhruba, Jensen, Matthew, Lasser, Micaela, Huber, Emily, Yusuff, Tanzeen, Pizzo, Lucilla, Lifschutz, Brian, Desai, Inshya, Kubina, Alexis, Yennawar, Sneha, Kim, Sydney, Iyer, Janani, Rincon-Limas, Diego E., Lowery, Laura Anne, Girirajan, Santhosh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7043793/
https://www.ncbi.nlm.nih.gov/pubmed/32053595
http://dx.doi.org/10.1371/journal.pgen.1008590
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author Singh, Mayanglambam Dhruba
Jensen, Matthew
Lasser, Micaela
Huber, Emily
Yusuff, Tanzeen
Pizzo, Lucilla
Lifschutz, Brian
Desai, Inshya
Kubina, Alexis
Yennawar, Sneha
Kim, Sydney
Iyer, Janani
Rincon-Limas, Diego E.
Lowery, Laura Anne
Girirajan, Santhosh
author_facet Singh, Mayanglambam Dhruba
Jensen, Matthew
Lasser, Micaela
Huber, Emily
Yusuff, Tanzeen
Pizzo, Lucilla
Lifschutz, Brian
Desai, Inshya
Kubina, Alexis
Yennawar, Sneha
Kim, Sydney
Iyer, Janani
Rincon-Limas, Diego E.
Lowery, Laura Anne
Girirajan, Santhosh
author_sort Singh, Mayanglambam Dhruba
collection PubMed
description The 1.6 Mbp deletion on chromosome 3q29 is associated with a range of neurodevelopmental disorders, including schizophrenia, autism, microcephaly, and intellectual disability. Despite its importance towards neurodevelopment, the role of individual genes, genetic interactions, and disrupted biological mechanisms underlying the deletion have not been thoroughly characterized. Here, we used quantitative methods to assay Drosophila melanogaster and Xenopus laevis models with tissue-specific individual and pairwise knockdown of 14 homologs of genes within the 3q29 region. We identified developmental, cellular, and neuronal phenotypes for multiple homologs of 3q29 genes, potentially due to altered apoptosis and cell cycle mechanisms during development. Using the fly eye, we screened for 314 pairwise knockdowns of homologs of 3q29 genes and identified 44 interactions between pairs of homologs and 34 interactions with other neurodevelopmental genes. Interestingly, NCBP2 homologs in Drosophila (Cbp20) and X. laevis (ncbp2) enhanced the phenotypes of homologs of the other 3q29 genes, leading to significant increases in apoptosis that disrupted cellular organization and brain morphology. These cellular and neuronal defects were rescued with overexpression of the apoptosis inhibitors Diap1 and xiap in both models, suggesting that apoptosis is one of several potential biological mechanisms disrupted by the deletion. NCBP2 was also highly connected to other 3q29 genes in a human brain-specific interaction network, providing support for the relevance of our results towards the human deletion. Overall, our study suggests that NCBP2-mediated genetic interactions within the 3q29 region disrupt apoptosis and cell cycle mechanisms during development.
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spelling pubmed-70437932020-03-09 NCBP2 modulates neurodevelopmental defects of the 3q29 deletion in Drosophila and Xenopus laevis models Singh, Mayanglambam Dhruba Jensen, Matthew Lasser, Micaela Huber, Emily Yusuff, Tanzeen Pizzo, Lucilla Lifschutz, Brian Desai, Inshya Kubina, Alexis Yennawar, Sneha Kim, Sydney Iyer, Janani Rincon-Limas, Diego E. Lowery, Laura Anne Girirajan, Santhosh PLoS Genet Research Article The 1.6 Mbp deletion on chromosome 3q29 is associated with a range of neurodevelopmental disorders, including schizophrenia, autism, microcephaly, and intellectual disability. Despite its importance towards neurodevelopment, the role of individual genes, genetic interactions, and disrupted biological mechanisms underlying the deletion have not been thoroughly characterized. Here, we used quantitative methods to assay Drosophila melanogaster and Xenopus laevis models with tissue-specific individual and pairwise knockdown of 14 homologs of genes within the 3q29 region. We identified developmental, cellular, and neuronal phenotypes for multiple homologs of 3q29 genes, potentially due to altered apoptosis and cell cycle mechanisms during development. Using the fly eye, we screened for 314 pairwise knockdowns of homologs of 3q29 genes and identified 44 interactions between pairs of homologs and 34 interactions with other neurodevelopmental genes. Interestingly, NCBP2 homologs in Drosophila (Cbp20) and X. laevis (ncbp2) enhanced the phenotypes of homologs of the other 3q29 genes, leading to significant increases in apoptosis that disrupted cellular organization and brain morphology. These cellular and neuronal defects were rescued with overexpression of the apoptosis inhibitors Diap1 and xiap in both models, suggesting that apoptosis is one of several potential biological mechanisms disrupted by the deletion. NCBP2 was also highly connected to other 3q29 genes in a human brain-specific interaction network, providing support for the relevance of our results towards the human deletion. Overall, our study suggests that NCBP2-mediated genetic interactions within the 3q29 region disrupt apoptosis and cell cycle mechanisms during development. Public Library of Science 2020-02-13 /pmc/articles/PMC7043793/ /pubmed/32053595 http://dx.doi.org/10.1371/journal.pgen.1008590 Text en © 2020 Singh et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Singh, Mayanglambam Dhruba
Jensen, Matthew
Lasser, Micaela
Huber, Emily
Yusuff, Tanzeen
Pizzo, Lucilla
Lifschutz, Brian
Desai, Inshya
Kubina, Alexis
Yennawar, Sneha
Kim, Sydney
Iyer, Janani
Rincon-Limas, Diego E.
Lowery, Laura Anne
Girirajan, Santhosh
NCBP2 modulates neurodevelopmental defects of the 3q29 deletion in Drosophila and Xenopus laevis models
title NCBP2 modulates neurodevelopmental defects of the 3q29 deletion in Drosophila and Xenopus laevis models
title_full NCBP2 modulates neurodevelopmental defects of the 3q29 deletion in Drosophila and Xenopus laevis models
title_fullStr NCBP2 modulates neurodevelopmental defects of the 3q29 deletion in Drosophila and Xenopus laevis models
title_full_unstemmed NCBP2 modulates neurodevelopmental defects of the 3q29 deletion in Drosophila and Xenopus laevis models
title_short NCBP2 modulates neurodevelopmental defects of the 3q29 deletion in Drosophila and Xenopus laevis models
title_sort ncbp2 modulates neurodevelopmental defects of the 3q29 deletion in drosophila and xenopus laevis models
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7043793/
https://www.ncbi.nlm.nih.gov/pubmed/32053595
http://dx.doi.org/10.1371/journal.pgen.1008590
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