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Identifying Autism Loci and Genes by Tracing Recent Shared Ancestry

机译:通过追踪最近的共享祖先来识别自闭症基因座和基因

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To find inherited causes of autism-spectrum disorders, we studied families in which parents share ancestors, enhancing the role of inherited factors. We mapped several loci, some containing large, inherited, homozygous deletions that are likely mutations. The largest deletions implicated genes, including PCDH10 (protocadherin 10) and DIA1 (deleted in autism1, or c3orf58), whose level of expression changes in response to neuronal activity, a marker of genes involved in synaptic changes that underlie learning. A subset of genes, including NHE9 (Na~+/H~+ exchanger 9), showed additional potential mutations in patients with unrelated parents. Our findings highlight the utility of "homozygosity mapping" in heterogeneous disorders like autism but also suggest that defective regulation of gene expression after neural activity may be a mechanism common to seemingly diverse autism mutations.
机译:为了找到自闭症谱系障碍的遗传原因,我们研究了父母共享祖先的家庭,从而增强了遗传因素的作用。我们绘制了几个基因座,其中一些含有可能是突变的大的,遗传的,纯合的缺失。最大的缺失涉及到基因,包括PCDH10(原钙粘蛋白10)和DIA1(在自闭症1或c3orf58中缺失),其表达水平响应神经元活动而改变,而神经元活动是参与学习的突触变化相关基因的标志。包括NHE9(Na〜+ / H〜+交换子9)在内的基因的一个子集在父母无关的患者中显示出其他潜在的突变。我们的发现突出了“同质性作图”在自闭症等异质性疾病中的作用,但也表明神经活动后基因表达的缺陷调控可能是看似多样的自闭症突变所共有的机制。

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