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Coexpression networks implicate human midfetal deep cortical projection neurons in the pathogenesis of autism

机译:共表达网络将人类胎儿中深层皮质投射神经元牵连到自闭症的发病机理中

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摘要

Autism spectrum disorder (ASD) is a complex developmental syndrome of unknown etiology. Recent studies employing exome- and genome-wide sequencing have identified nine high-confidence ASD (hcASD) genes. Working from the hypothesis that ASD-associated mutations in these biologically pleiotropic genes will disrupt intersecting developmental processes to contribute to a common phenotype, we have attempted to identify time periods, brain regions, and cell types in which these genes converge. We have constructed coexpression networks based on the hcASD "seed" genes, leveraging a rich expression data set encompassing multiple human brain regions across human development and into adulthood. By assessing enrichment of an independent set of probable ASD (pASD) genes, derived from the same sequencing studies, we demonstrate a key point of convergence in midfetal layer 5/6 cortical projection neurons. This approach informs when, where, and in what cell types mutations in these specific genes may be productively studied to clarify ASD pathophysiology.
机译:自闭症谱系障碍(ASD)是病因不明的复杂发展综合征。最近使用外显子组和全基因组测序的研究已经鉴定出9个高信度ASD(hcASD)基因。根据这些生物学多效性基因中与ASD相关的突变将破坏相交的发育过程以促成共同表型的假说,我们试图确定这些基因在其中融合的时间段,大脑区域和细胞类型。我们利用hcASD“种子”基因构建了共表达网络,利用了丰富的表达数据集,该数据集涵盖了人类发展到成年后的多个人脑区域。通过评估来自相同测序研究的一组独立的可能的ASD(pASD)基因的富集,我们证明了胎儿中层5/6皮质投射神经元的收敛关键点。这种方法可以通知何时,何地以及在哪些细胞类型中对这些特定基因的突变进行有效率的研究,以阐明ASD的病理生理学。

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