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

机译:<斜视> NCBP2 在<斜视>果蝇和<斜视> XENOPUS LAEVIS 型号中调节3Q29缺失的神经发育缺陷

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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.
机译:染色体3Q29的1.6 Mbp缺失与一系列神经发育障碍有关,包括精神分裂症,自闭症,微头和智力残疾。尽管对神经发育至关重要,但缺失缺失潜在基因,遗传相互作用和破坏生物机制的作用尚未完全表征。在这里,我们使用定量方法在3 Q29区内使用组织特异性单独的单独的单独的单独的单独的单独的单独的单身和成对敲低来进行定量方法,并在3Q29区域内为14种基因的同源物。我们鉴定了3Q29基因多种同源物的发育,细胞和神经元表型,可能是由于在发育过程中改变的细胞凋亡和细胞周期机制。使用蝇眼,我们筛选314个基因的同源物的314个成对敲低,并鉴定了与其他神经发育基因对的同源物和34对相互作用之间的44个相互作用。有趣的是,NCBP2在果蝇(CBP20)和X中的同源物。 Laevis(NCBP2)增强了其他3Q29基因的同源物的表型,导致细胞组织和脑形态的细胞凋亡的显着增加。这些细胞和神经元缺陷随着两种模型的凋亡抑制剂DIAP1和XIAP的过度表达抵抗,表明细胞凋亡是缺失破坏的几种潜在的生物机制之一。 NCBP2还高度连接到人脑特异性互动网络中的其他3Q29基因,为我们对人类缺失的结果相关的支持提供支持。总体而言,我们的研究表明,3Q29区内的NCBP2介导的遗传相互作用破坏了开发过程中的细胞凋亡和细胞周期机制。

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